Depo 5K di Slot Online: Kenali Aturan, Fitur, dan Cara Bermain Secara Aman

Memahami Konsep Depo 5K

Istilah depo 5k sering muncul dalam pembahasan mengenai platform slot online karena menawarkan nominal setoran awal yang relatif kecil. Konsep ini pada dasarnya merujuk pada batas minimum deposit sebesar Rp5.000 yang ditetapkan oleh suatu platform. Dengan nominal tersebut, pemain dapat mencoba memahami mekanisme permainan tanpa langsung mengalokasikan dana dalam jumlah besar. Namun, nominal deposit yang rendah bukan berarti permainan otomatis bebas risiko, sehingga pemain tetap perlu memperhatikan aturan dan ketentuan yang berlaku.

Mengapa Nominal Deposit Kecil Menarik?

Banyak pemain tertarik pada deposit rendah karena nominal tersebut terasa lebih ringan untuk anggaran hiburan. Selain itu, pemain pemula dapat mengenali berbagai fitur permainan tanpa harus menyediakan modal besar sejak awal. Meski begitu, pemain sebaiknya tidak menganggap deposit kecil sebagai jaminan keuntungan. Hasil permainan slot tetap bergantung pada mekanisme permainan dan unsur keberuntungan, sehingga tidak ada strategi yang dapat memastikan kemenangan setiap saat.

Kenali Aturan Sebelum Bermain

Sebelum melakukan transaksi, pemain perlu membaca aturan platform secara menyeluruh. Informasi penting biasanya mencakup batas minimum dan maksimum deposit, metode pembayaran, ketentuan penarikan, persyaratan bonus, serta kebijakan akun. Dengan memahami aturan tersebut, pemain dapat menghindari kesalahpahaman ketika ingin menggunakan layanan tertentu. Selain itu, pemain sebaiknya memastikan bahwa aktivitas perjudian online diperbolehkan secara hukum di wilayah tempat mereka berada.

Fitur yang Perlu Diperhatikan

Platform slot biasanya menawarkan berbagai fitur, seperti pilihan permainan yang beragam, informasi mengenai simbol, tabel pembayaran, riwayat transaksi, dan pengaturan akun. Karena itu, pemain sebaiknya memeriksa fitur tersebut sebelum menggunakan dana. Informasi mengenai persentase pembayaran atau mekanisme permainan juga dapat membantu pemain memahami karakteristik sebuah permainan, walaupun informasi tersebut tidak dapat memprediksi hasil putaran berikutnya.

Memahami Risiko Permainan Slot

Permainan slot menggunakan mekanisme acak sehingga hasil setiap putaran tidak dapat dipastikan sebelumnya. Oleh karena itu, pemain tidak seharusnya mengejar kerugian dengan terus menambah deposit. Bahkan ketika seseorang memulai dengan depo 5k di tengah sesi permainan, ia tetap dapat kehilangan lebih banyak apabila terus melakukan setoran tambahan setelah mengalami kekalahan. Pemain perlu menetapkan batas pengeluaran sejak awal dan menghentikan permainan ketika batas tersebut tercapai.

Cara Bermain dengan Lebih Bertanggung Jawab

Langkah sederhana dapat membantu pemain menjaga aktivitas tetap terkendali. Pertama, tentukan anggaran hiburan yang memang sanggup ditanggung dan jangan menggunakan uang untuk kebutuhan pokok. Kedua, tetapkan batas waktu agar permainan tidak berlangsung tanpa kendali. Ketiga, jangan menganggap kemenangan sebelumnya sebagai alasan untuk meningkatkan taruhan secara impulsif. Terakhir, berhenti bermain apabila aktivitas tersebut mulai mengganggu pekerjaan, pendidikan, hubungan sosial, atau kondisi keuangan.

Waspadai Promosi yang Terlalu Menggiurkan

Promosi deposit rendah memang dapat menarik perhatian, tetapi pemain perlu membaca syarat dan ketentuannya secara teliti. Beberapa promosi mungkin memiliki persyaratan tertentu sebelum bonus dapat digunakan atau ditarik. Karena itu, jangan hanya melihat angka deposit atau bonus yang ditampilkan pada halaman promosi. Periksa pula reputasi layanan, transparansi ketentuan, keamanan transaksi, serta kebijakan privasinya sebelum memberikan data pribadi atau melakukan transaksi.

Keamanan Akun dan Data Pribadi

Keamanan digital juga menjadi bagian penting ketika seseorang menggunakan layanan online. Pemain sebaiknya menggunakan kata sandi yang kuat dan berbeda dari akun lain. Jangan membagikan kode verifikasi, kata sandi, atau informasi perbankan kepada pihak lain. Selain itu, hindari mengakses akun melalui perangkat atau jaringan yang tidak tepercaya. Jika sebuah platform meminta data yang tidak relevan atau menunjukkan aktivitas mencurigakan, sebaiknya hentikan transaksi dan lakukan pemeriksaan lebih lanjut.

Jangan Terjebak Anggapan Pasti Menang

Salah satu kesalahan umum adalah menganggap nominal deposit tertentu dapat meningkatkan peluang kemenangan secara otomatis. Padahal, jumlah setoran tidak mengubah sifat acak hasil permainan. Begitu pula dengan anggapan bahwa mesin yang baru saja memberikan kemenangan pasti akan segera kalah, atau sebaliknya. Pemain perlu memahami bahwa pola semacam itu tidak dapat dijadikan dasar untuk menjamin hasil berikutnya.

Kesimpulan

Depo 5k dapat dipahami sebagai pilihan nominal setoran awal yang relatif kecil, tetapi konsep tersebut tetap perlu disertai pemahaman mengenai aturan, risiko, fitur, dan keamanan. Nominal rendah sebaiknya tidak menjadi alasan untuk bermain tanpa batas. Sebaliknya, pemain perlu menetapkan anggaran, memahami ketentuan layanan, menjaga keamanan data, dan menyadari bahwa hasil slot tidak dapat dipastikan. Dengan pendekatan yang lebih bijak, seseorang dapat menghindari keputusan impulsif dan menempatkan aktivitas tersebut sebagai hiburan berisiko, bukan sebagai cara untuk memperoleh penghasilan yang pasti.

Jinyan Cao | Environmental Science | Best Researcher Award

Best Researcher Award

Jinyan Cao
Kunming University of Science and Technology, China

Jinyan Cao
Affiliation Kunming University of Science and Technology
Country China
Scopus ID 57189333089
Documents 12
Citations 1,669
h-index 11
Subject Area Environmental Science
Event International Research Hypothesis Excellence Award
ORCID 0000-0001-9440-8135

Jinyan Cao is a researcher affiliated with Kunming University of Science and Technology in China whose documented research contributions are situated within environmental science and environmental engineering. The publication record supplied for this profile includes studies of catalytic materials, photocatalytic degradation of pharmaceutical and antibiotic contaminants, sulfur dioxide absorption, and catalytic removal of nitrogen oxides. [1]

Abstract

This article presents an academic recognition profile of Jinyan Cao in connection with the Best Researcher Award associated with the International Research Hypothesis Excellence Award. The supplied research record demonstrates activity in environmental science, with particular emphasis on heterogeneous catalysis, photocatalytic environmental remediation, pollutant degradation, and flue-gas treatment. The publication set includes investigations into yttrium-decorated Cu/SAPO-34 for nitric oxide removal, phosphorus-doped BiOCl for tetracycline degradation, WC/BiOCl composite photocatalysts for sulfamethoxazole degradation, morpholine cyclic amines for sulfur dioxide absorption, and manganese-doped BiOCl for metronidazole degradation. [2] [3] [4]

Keywords

Jinyan Cao; Environmental Science; Environmental Engineering; Photocatalysis; Heterogeneous Catalysis; Pollutant Degradation; Nitrogen Oxide Removal; Sulfur Dioxide Absorption; Antibiotic Degradation; BiOCl Photocatalysts; Cu/SAPO-34; Chemical Engineering; Environmental Remediation; Research Impact; Best Researcher Award.

Introduction

Environmental pollution control requires approaches capable of treating chemically diverse contaminants while maintaining adequate activity, stability, selectivity, and practical feasibility. Research in environmental catalysis and photocatalysis therefore explores material composition, surface properties, charge-transfer mechanisms, reaction pathways, and operating conditions that can improve pollutant transformation. The publication record associated with Jinyan Cao reflects this broad research landscape through studies involving catalytic removal of nitrogen oxides, photocatalytic degradation of antibiotics and pharmaceuticals, and absorption of sulfur dioxide from flue gas. [2] [3] [4]

Research Profile

The supplied profile identifies Jinyan Cao with Kunming University of Science and Technology, China, and classifies the principal subject area as Environmental Science. The listed Scopus author identifier is 57189333089. The supplied indexed record contains 12 documents, 1,669 citations, and an h-index of 11. [1]

Research Contributions

The documented contributions can be grouped around the design, modification, characterization, and application of catalytic materials for environmental treatment. In the study of Cu/SAPO-34, yttrium decoration was investigated in relation to hydrothermal stability and NO removal at both low and high temperatures. This work addresses an important practical consideration for catalyst performance because environmental catalysts may encounter changing operating temperatures and hydrothermal conditions. [2]

Publications

The following publications are included in the supplied research record. DOI identifiers are provided where available and link directly to the corresponding DOI resolver.

1. Boosting low-temperature and high-temperature hydrothermal stability of Cu/SAPO-34 for NO removal via yttrium decoration.
Chemical Engineering Journal, 2023-01.

2. P-doped BiOCl for visible light photodegradation of tetracycline: An insight from experiment and calculation.
Chemical Engineering Journal, 2022-05

3. WC/BiOCl binary composite photocatalyst for accelerating interfacial charge separation and sulfamethoxazole degradation.
Applied Surface Science, 2021-12.

Research Impact

The supplied Scopus information reports 1,669 citations and an h-index of 11 for the researcher identifier 57189333089. Such indicators can be useful for describing the visibility and citation activity of a research record, although citation counts vary over time and should not be treated as a standalone measure of scientific quality. [1][5] [6]

The documented impact profile can therefore be considered across several dimensions:

  • Scholarly visibility: The supplied citation and h-index information indicates measurable citation activity in indexed literature.
  • Environmental relevance: The publications address pollutants and treatment challenges of direct environmental significance.
  • Materials innovation: Several studies investigate doped, decorated, or composite catalytic materials.

Award Suitability

For the purposes of the International Research Hypothesis Excellence Award, the supplied record presents several characteristics that may be considered when evaluating suitability for a Best Researcher Award. These include a documented body of peer-reviewed research, publication in established scientific journals, an environmental research focus, measurable citation activity, and contributions addressing multiple pollutant-treatment challenges. [1]

Potential evaluation dimensions include:

  1. Research productivity: consideration of the documented publication record and continuity of research activity.
  2. Scientific relevance: assessment of how the research addresses significant environmental and engineering problems.

Conclusion

Jinyan Cao’s supplied academic record reflects research activity in environmental science focused on catalytic and photocatalytic approaches to pollution control. The documented publications address NO removal, SO2 absorption, and degradation of pharmaceutical and antibiotic contaminants through investigations of catalyst composition, photocatalytic charge separation, degradation pathways, and environmental reaction mechanisms. [4] [5] [6]

References

  1. Elsevier. (n.d.). Scopus author details: Jinyan Cao, Author ID 57189333089. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57189333089
  2. Gao, L., Gao, W., Wang, H., Xu, S., Tian, X., Cao, J., Chen, J., Zhang, Q., Ning, P., & Hao, J. (2023). Boosting low-temperature and high-temperature hydrothermal stability of Cu/SAPO-34 for NO removal via yttrium decoration. Chemical Engineering Journal.
    DOI: https://doi.org/10.1016/j.cej.2022.140520
  3. Cao, J., Cen, W., Jing, Y., Du, Z., Chu, W., & Li, J. (2022). P-doped BiOCl for visible light photodegradation of tetracycline: An insight from experiment and calculation. Chemical Engineering Journal.
    DOI: https://doi.org/10.1016/j.cej.2022.134683
  4. Cao, J., Jing, Y., Du, Z., Chu, W., Li, J., & Cen, W. (2021). WC/BiOCl binary composite photocatalyst for accelerating interfacial charge separation and sulfamethoxazole degradation. Applied Surface Science.
    DOI: https://doi.org/10.1016/j.apsusc.2021.151201
  5. Cheng, C., Li, J., Cao, J., Guo, J., & Cen, W. (2021). The absorption of SO2 by morpholine cyclic amines with sulfolane as the solvent for flue gas. Journal of Hazardous Materials.
    DOI: https://doi.org/10.1016/j.jhazmat.2020.124462
  6. Cao, J., Li, J., Chu, W., & Cen, W. (2020). Facile synthesis of Mn-doped BiOCl for metronidazole photodegradation: Optimization, degradation pathway, and mechanism. Chemical Engineering Journal.
    DOI: https://doi.org/10.1016/j.cej.2020.125813

Kunrong He | Plant Hormones | Best Researcher Award

Best Researcher Award

Kunrong He
Nanjing Forestry University, China

Kunrong He
Affiliation Nanjing Forestry University
Country China
Scopus ID 58078412200
Documents 16
Citations 353
h-index 9
Subject Area Plant Hormones
Event International Research Hypothesis Excellence Award
ORCID 0000-0002-9639-9612

Kunrong He is a researcher affiliated with Nanjing Forestry University in China whose reported scholarly profile includes 16 documents, 353 citations, and an h-index of 9. The research record supplied for this recognition profile is particularly associated with plant hormone signaling, seed dormancy and germination, plant immunity, lipid metabolism, and regulatory mechanisms that connect multiple phytohormonal pathways. These themes are represented in recent journal publications spanning Plant Physiology, The Plant Cell, Science China Life Sciences, and Plant Science. [1]

Abstract

This academic recognition profile presents the research record of Kunrong He, Nanjing Forestry University, with emphasis on research related to plant hormones and associated molecular regulatory systems. The supplied publication record demonstrates engagement with complex interactions among jasmonate, auxin, and abscisic acid signaling, as well as regulatory networks controlling seed dormancy and germination. Recent work also addresses plant immunity and lipid-droplet metabolism in relation to cuticle assembly. [2] [3] [4]

Keywords

  • Best Researcher Award
  • Kunrong He
  • Plant Hormones
  • Plant hormone signaling
  • Jasmonate signaling
  • Auxin signaling
  • Abscisic acid signaling

Introduction

Plant hormones are central regulators of growth, development, reproduction, stress responses, and adaptation. Their biological effects frequently arise from interactions among multiple signaling pathways rather than from the action of an individual hormone in isolation. Research into the molecular mechanisms that integrate these pathways therefore provides a basis for understanding how plants coordinate developmental and environmental responses.[2] [3] [4]

Research Profile

Kunrong He is affiliated with Nanjing Forestry University, China. The supplied Scopus information identifies author ID 58078412200 and reports 16 indexed documents, 353 citations, and an h-index of 9. These indicators provide a quantitative overview of the supplied indexed research record but should be interpreted alongside publication quality, authorship contributions, research context, and the scientific significance of individual studies. [1]

Research Contributions

The supplied publications indicate several interconnected areas of research contribution:

  • Hormonal signaling integration: The MYC2–ARF16–ABI5 study addresses a molecular complex proposed to function as a transcriptional switch linking jasmonate, auxin, and abscisic acid signaling in Arabidopsis. [2]
  • Seed dormancy and germination: The review of regulatory networks governing seed dormancy and germination synthesizes mechanisms relevant to the transition between dormant and germinating states. [4]
  • Abscisic acid regulation: Research on evening complex proteins examines their antagonistic relationship with ABI3 and ABI5 and their temporal role in abscisic acid signaling and seed germination. [6]
  • Plant immunity: The study of lapachol evaluates a chemically identified naphthoquinone in relation to plant immune responses, extending the research profile toward chemical modulation of plant defense. [5]

Publications

The following publications were supplied as part of the research record. Publication details, dates, journal titles, contributors, and DOI information are presented as provided.

  • Transcriptional control of plant hormone crosstalk
  • Jasmonate, auxin, and abscisic acid signaling interactions
  • Seed dormancy, germination, and developmental timing
  • Plant immunity and chemical regulation
  • Lipid-droplet metabolism and cuticle assembly

Research Impact

The supplied research metrics indicate 353 citations and an h-index of 9 across 16 reported documents. Such indicators suggest that the research record has received measurable scholarly attention within the indexed literature. Citation counts and h-index values, however, are quantitative indicators and do not by themselves establish the quality, originality, or broader societal importance of individual research findings. [1][2] [3]

Award Suitability

Based on the information supplied, Kunrong He demonstrates several characteristics relevant to consideration for the Best Researcher Award within the International Research Hypothesis Excellence Award framework. The assessment below is based on the supplied publication record and bibliometric information.

  • Research specialization: The profile has a clear connection to plant hormones and molecular regulatory mechanisms.
  • Recent scholarly activity: The supplied record includes multiple journal articles published between August 2025 and July 2026.
  • Research breadth: The publications encompass hormone signaling, seed biology, plant immunity, lipid metabolism, and developmental processes.
  • Scholarly influence: The supplied metrics report 353 citations and an h-index of 9 across 16 documents.
  • Interdisciplinary relevance: The research connects molecular biology, plant physiology, developmental biology, metabolism, and stress or defense responses.

Conclusion

Kunrong He’s supplied research profile presents a coherent body of work in plant regulatory biology, with particular relevance to plant hormones and the molecular mechanisms through which signaling pathways influence development, immunity, metabolism, seed dormancy, and germination. The recent publication record demonstrates continuing activity in these areas and includes studies addressing interactions among jasmonate, auxin, and abscisic acid signaling. [2] [4] [6]

References

  1. Elsevier. (n.d.). Scopus author details: Kunrong He, Author ID 58078412200. Scopus.
    https://www.scopus.com/pages/authors/58078412200
  2. He, K., Huang, H., Bai, N., Wang, T., Zhang, J., Han, X., Yang, M., Zhang, M., Du, J., Zhou, L., et al. (2026). Arabidopsis MYC2–ARF16–ABI5 complex functions as a transcriptional switch to regulate jasmonate, auxin, and abscisic acid signaling synergy. Plant Physiology. DOI: 10.1093/plphys/kiag394.
    https://doi.org/10.1093/plphys/kiag394
  3. Zhou, L., Xu, Y., Cao, R., Li, J., Zhao, Y., Zhong, H., Zhang, Y., He, K., Cao, F., Ye, Y. (2026). Breakdown of lipid droplets by the triacylglycerol lipase sugar dependent 1 contributes to cuticle assembly in poplar. The Plant Cell. DOI: 10.1093/plcell/koag083.
    https://doi.org/10.1093/plcell/koag083
  4. He, K., Wang, W., You, C., Qi, X., Chen, X., Wang, X., Yang, M., Zhang, M., Tang, R., Huang, Z., et al. (2025). Holistic overview of regulatory networks governing seed dormancy and germination in plants. Science China Life Sciences. DOI: 10.1007/s11427-025-3157-8.
    https://doi.org/10.1007/s11427-025-3157-8
  5. Ma, Y., Zhao, Y., Huang, H., Zhao, Y., He, K., Zhou, L., Ye, Y. (2025). Lapachol, a naphthoquinone identified through chemical screening, inhibits plant immunity. Plant Science. DOI: 10.1016/j.plantsci.2025.112659.
    https://doi.org/10.1016/j.plantsci.2025.112659
  6. Tang, R., Yang, J., Han, X., He, K., Zhang, C., Yang, M., Zhang, J., Huang, Z., Ye, J., Xu, T., et al. (2025). Evening complex proteins antagonize ABI3 and ABI5 to temporally regulate abscisic acid signaling and seed germination. The Plant Cell. DOI: 10.1093/plcell/koaf189.
    https://doi.org/10.1093/plcell/koaf189

Fakhra Muneeb | Environmental Hypotheses | Hypothesis Achievement Award

Hypothesis Achievement Award

Fakhra Muneeb
The University of Melbourne, Australia

Fakhra Muneeb
Affiliation The University of Melbourne
Country Australia
Scopus ID 57221955078
Documents 4
Citations 56
h-index 3
Subject Area Environmental Hypotheses
Event International Research Hypothesis Excellence Award
ORCID 0000-0001-8566-5367

Fakhra Muneeb is a researcher affiliated with The University of Melbourne, Australia, whose documented scholarly work includes environmental and remote-sensing research. Her publication record includes research on glacial-lake inventory and glacial-lake-outburst-flood susceptibility in the Hunza River Basin of the Western Karakorum, as well as research examining associations between mining activity and atmospheric dust. The available bibliographic record identifies four documents, 56 citations, and an h-index of 3 in the supplied Scopus profile information.[1]

Abstract

This academic recognition profile presents the research record of Fakhra Muneeb, affiliated with The University of Melbourne, Australia, in relation to the Hypothesis Achievement Award under the International Research Hypothesis Excellence Award. The documented research portfolio includes environmental and remote-sensing investigations, with particular relevance to the assessment of glacial lakes and susceptibility to glacial lake outburst floods in the Hunza River Basin of the Western Karakorum. The relevant article was published in Remote Sensing in 2021 and has the.[2]

Keywords

Keywords: Hypothesis Achievement Award; Fakhra Muneeb; Environmental Hypotheses; Environmental Research; Remote Sensing; Glacial Lakes; Glacial Lake Outburst Floods; Hunza River Basin; Western Karakorum; Atmospheric Dust; Mining Activity; Environmental Hazards; Spatial Analysis; Climate and Environmental Research.

Introduction

Environmental research frequently requires the integration of observations from multiple spatial and temporal scales. Remote sensing, geographic information analysis, environmental monitoring, and quantitative assessment can support the investigation of hazards and environmental changes that are difficult to characterize through field observations alone. In this context, research hypotheses provide a framework for linking observations with testable explanations and for identifying relationships that can subsequently be examined using empirical evidence.

Research Profile

The supplied researcher profile identifies Fakhra Muneeb with The University of Melbourne in Australia and assigns the subject area Environmental Hypotheses. The supplied bibliometric information lists a Scopus Author ID of 57221955078, four documents, 56 citations, and an h-index of 3.[1] These indicators provide quantitative context for the documented publication record but should be interpreted as bibliometric measures rather than as standalone assessments of research quality.

Research Contributions

One of the principal documented contributions is the study Inventory and GLOF Susceptibility of Glacial Lakes in Hunza River Basin, Western Karakorum, published in Remote Sensing on 5 May 2021. The work addresses the identification and characterization of glacial lakes and their susceptibility to glacial lake outburst floods, an environmental hazard relevant to high-mountain regions. The article lists Fakhra Muneeb, Siddique Ullah Baig, Junaid Aziz Khan, and Muhammad Fahim Khokhar as contributors and is identified by DOI 10.3390/rs13091794.[2]

Publications

The following publications are included in the supplied research record. Bibliographic details are presented conservatively according to the information provided.

1. Inventory and GLOF Susceptibility of Glacial Lakes in Hunza River Basin, Western Karakoru[2]

The article investigates glacial lakes in the Hunza River Basin and evaluates their susceptibility to glacial lake outburst floods. Its environmental relevance lies in the relationship between changing mountain landscapes, water bodies, and potential downstream hazards.

2. Assessing local to global associations between mining activity and atmospheric dust

Research Impact

The supplied Scopus profile information reports 56 citations across four documents and an h-index of 3.[1] These indicators suggest that the documented publications have received measurable scholarly attention. Citation counts, however, can vary over time and across databases, and they should therefore be regarded as contextual indicators rather than comprehensive measures of scientific significance.

Award Suitability

The documented research profile provides several areas of alignment with the Hypothesis Achievement Award. The assessment below is based on the supplied publication and bibliometric information and is intended as an academic recognition profile rather than an independent adjudication of award eligibility.

  1. Environmental research relevance: The documented studies address environmental hazards, landscape characteristics, atmospheric conditions, and human–environment relationships.
  2. Evidence-based investigation: The glacial-lake study applies remote-sensing-based analysis to a defined environmental hazard problem.[2]
  3. Interdisciplinary scope: The research connects remote sensing, environmental science, hazard assessment, atmospheric analysis, and the study of mining activity.
  4. Scholarly contribution: The supplied bibliometric record reports four documents, 56 citations, and an h-index of 3.[1]

Conclusion

Fakhra Muneeb’s documented research profile reflects an environmental research orientation encompassing remote sensing, glacial-lake assessment, GLOF susceptibility, mining activity, and atmospheric dust. The 2021 Remote Sensing publication on glacial lakes in the Hunza River Basin provides a clearly defined example of environmental hazard research supported by spatial observation and analysis.[2] The later research on mining activity and atmospheric dust extends the environmental scope toward human–environment interactions.

References

  1. Elsevier. (n.d.). Scopus author details: Fakhra Muneeb, Author ID 57221955078. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57221955078
  2. Muneeb, F., Baig, S. U., Khan, J. A., & Khokhar, M. F. (2021). Inventory and GLOF Susceptibility of Glacial Lakes in Hunza River Basin, Western Karakorum. Remote Sensing.
    DOI: https://doi.org/10.3390/rs13091794
  3. Muneeb, F., Werner, T. T., Barzin, S., & Drysdale, R. N. (2026). Assessing local to global associations between mining activity and atmospheric dust. Science of the Total Environment.
  4. ORCID. (n.d.). ORCID record for Fakhra Muneeb.
    https://orcid.org/0000-0001-8566-5367

 

Shiji Fang | Medicine | Best Researcher Award

Best Researcher Award

Shiji Fang
Lishui Central Hospital, China

Shiji Fang
Affiliation Lishui Central Hospital
Country China
Scopus ID 57192204982
Documents 91
Citations 2,574
h-index 27
Subject Area Medicine
Event International Research Hypothesis Excellence Award
ORCID 0009-0004-4998-5039

Shiji Fang is a medical researcher affiliated with Lishui Central Hospital in China whose indexed research profile reflects sustained scholarly activity in biomedical and translational medicine. The available Scopus-derived profile records 91 documents, 2,574 citations and an h-index of 27, indicating a substantial body of indexed research and citation activity. [1][2]

Abstract

Shiji Fang’s research profile is situated within medicine and includes a substantial body of indexed scholarly work. The supplied publication record highlights research at the intersection of cancer biology, tumor microenvironment, immunotherapy and nanomedicine. Recent studies address mechanisms and therapeutic approaches involving immunogenic cell death, reactive oxygen species, endoplasmic reticulum stress, cellular senescence, copper homeostasis, ferroptosis, cuproptosis, chemoembolization and MRI-guided therapeutic systems. [1] [2]

Keywords

Shiji Fang; Best Researcher Award; Medicine; cancer research; hepatocellular carcinoma; immunotherapy; nanomedicine; immunogenic cell death; ferroptosis; cuproptosis; tumor biology; therapeutic delivery; translational medicine; oxidative stress; endoplasmic reticulum stress.

Introduction

Contemporary cancer research increasingly integrates molecular oncology with materials science, immunology and targeted therapeutic delivery. Hepatocellular carcinoma in particular presents a complex therapeutic environment in which tumor heterogeneity, immune suppression and resistance mechanisms can limit treatment effectiveness. Research that investigates interactions among tumor cells, immune pathways and therapeutic nanoplatforms therefore forms an important component of translational biomedical investigation.[2] [3]

Research Profile

The supplied Scopus profile identifies Shiji Fang with Author ID 57192204982 and lists Lishui Central Hospital, China, as the institutional affiliation. The profile is associated with the subject area of Medicine and records 91 indexed documents, 2,574 citations and an h-index of 27. [1]

Research characteristics

  • Primary discipline: Medicine.
  • Institutional affiliation: Lishui Central Hospital, China.
  • Scopus Author ID: 57192204982.
  • Indexed documents: 91.
  • Reported citations: 2,574.
  • Reported h-index: 27.
  • Major themes represented: cancer biology, hepatocellular carcinoma, immunotherapy, nanomedicine and regulated cell-death mechanisms.

Research Contributions

The supplied publications indicate several connected areas of research contribution. One strand examines how natural or bioactive compounds can influence cancer-cell death and stress-response pathways. The 2025 article on astragalin investigates immunogenic cell death in liver cancer in connection with NQO2, reactive oxygen species and endoplasmic reticulum stress. [2]

A second strand concerns the integration of cellular senescence with immune activation. The study published in Advanced Science describes a biomimetic nanomedicine approach designed around senescence-modulated immune activation and its potential relationship with immunotherapy efficacy in hepatocellular carcinoma. [3]

Publications

The following selected publications are taken from the supplied Scopus-derived research information. The list emphasizes recent 2025 articles and includes DOI identifiers where provided.

  1. Astragalin induces immunogenic cell death in liver cancer by targeting NQO2 to promote ROS-mediated endoplasmic reticulum stress pathway. Free Radical Biology and Medicine.
  2. Biomimetic Nanomedicine for Senescence-Modulated Immune Activation Enhances Immunotherapy Efficacy in Hepatocellular Carcinoma. Advanced Science.
  3. Cascade-targeting copper homeostasis nano-regulators for mild-photothermal boosted cuproptosis/ferroptosis mediated breast cancer therapy. Journal of Nanobiotechnology.
  4. Corrigendum to “Fangchinoline inhibits metastasis and reduces inflammation-induced epithelial-mesenchymal transition by targeting the FOXM1-ADAM17 axis in hepatocellular carcinoma”. Cellular Signalling.

Research Impact

The supplied bibliometric indicators provide a quantitative view of the visibility of the research record. With 2,574 reported citations and an h-index of 27 across 91 indexed documents, the profile demonstrates sustained citation activity within the indexed scholarly literature. [1] Bibliometric measures should nevertheless be interpreted alongside publication quality, methodological rigor, authorship contributions and the substantive influence of individual studies.

Award Suitability

The Best Researcher Award within the International Research Hypothesis Excellence Award framework can be assessed using evidence concerning research productivity, scholarly visibility, thematic contribution and relevance to the broader research community. The supplied profile provides several measurable indicators, including 91 indexed documents, 2,574 citations and an h-index of 27. [1]

Conclusion

Shiji Fang’s supplied academic profile presents an established research record in Medicine, with affiliation to Lishui Central Hospital in China and a Scopus Author ID of 57192204982. The reported 91 documents, 2,574 citations and h-index of 27 provide quantitative indicators of scholarly activity and citation visibility. [1]

References

  1. Elsevier. (n.d.). Scopus author details: Shiji Fang, Author ID 57192204982. Scopus.
    https://www.scopus.com/pages/authors/57192204982
  2. Zheng, L., Zhao, Z., Chen, L., Yang, W., Ercolani, G., Qin, P., Lin, B., Han, M., Weng, Q., Zhang, Y., et al. (2025). Astragalin induces immunogenic cell death in liver cancer by targeting NQO2 to promote ROS-mediated endoplasmic reticulum stress pathway. Free Radical Biology and Medicine.
    https://doi.org/10.1016/j.freeradbiomed.2025.07.047
  3. Fang, S., Zheng, L., Lin, B., Chen, J., Hou, D., Ding, Y., Han, M., Qin, P., Wang, M., Guo, X., et al. (2025). Biomimetic Nanomedicine for Senescence-Modulated Immune Activation Enhances Immunotherapy Efficacy in Hepatocellular Carcinoma. Advanced Science.
    https://doi.org/10.1002/advs.202517792
  4. Liang, X., Fang, S., Xin, Y., Lei, J., Wang, W., Wei, Y., Li, W., Li, C., Tang, H., Wei, X., et al. (2025). Cascade-targeting copper homeostasis nano-regulators for mild-photothermal boosted cuproptosis/ferroptosis mediated breast cancer therapy. Journal of Nanobiotechnology.
    https://doi.org/10.1186/s12951-025-03722-2
  5. Chen, M., Chen, Y., Chen, W., Chen, X., Guo, X., Yu, J., Guo, X., Wang, M., Zhang, X., Hu, Q., et al. (2025). Immune-activated microspheres for enhanced chemoembolization of hepatocellular carcinoma by blocking the adenosine A2A receptor. Acta Biomaterialia.
    https://doi.org/10.1016/j.actbio.2025.04.042
  6. Chen, X., Zhang, F., Lu, C., Wu, R., Yang, et al. (2025). Lactate-Fueled Theranostic Nanoplatforms for Enhanced MRI-Guided Ferroptosis Synergistic with Immunotherapy of Hepatocellular Carcinoma. ACS Applied Materials and Interfaces.
    https://doi.org/10.1021/acsami.4c21890

Clickbet88 dan Tren Permainan Online: Apa yang Perlu Diketahui Pemain?

Perkembangan Permainan Online di Era Digital

Perkembangan teknologi digital telah mengubah cara masyarakat menikmati hiburan. Akses internet yang semakin cepat membuat berbagai platform permainan online mudah dijangkau melalui komputer maupun perangkat seluler. Selain menawarkan kemudahan, permainan online juga menghadirkan beragam pilihan yang mampu menarik perhatian pemain dengan tampilan interaktif dan pengalaman yang semakin modern. Karena itu, pemain perlu memahami perkembangan tren tersebut agar dapat menggunakan teknologi secara bijak.

Mengenal Perubahan Tren di Kalangan Pemain

Tren permainan online terus berubah mengikuti perkembangan teknologi dan kebiasaan pengguna. Platform digital kini berusaha menghadirkan antarmuka yang sederhana, proses navigasi yang cepat, serta pengalaman yang nyaman pada berbagai ukuran layar. Dalam pembahasan mengenai platform digital, clickbet88 sering muncul sebagai salah satu kata kunci yang digunakan pengguna ketika mencari informasi mengenai permainan online. Namun, popularitas sebuah kata kunci tidak otomatis menunjukkan bahwa suatu platform cocok atau aman bagi setiap orang.

Faktor Kemudahan Akses

Kemudahan akses menjadi salah satu faktor yang mendorong pertumbuhan permainan online. Pemain dapat membuka layanan digital kapan saja selama memiliki perangkat dan koneksi internet. Selain itu, desain yang responsif memungkinkan pengguna berpindah dari komputer ke ponsel tanpa mengalami perubahan pengalaman yang terlalu besar. Meski demikian, kemudahan akses juga membuat pemain harus lebih disiplin dalam mengatur waktu penggunaan agar aktivitas hiburan tidak mengganggu pekerjaan, pendidikan, maupun kehidupan sosial.

Pentingnya Memeriksa Informasi Platform

Sebelum menggunakan sebuah layanan permainan online, pemain sebaiknya memeriksa informasi yang tersedia mengenai platform tersebut. Pemain dapat melihat identitas pengelola, ketentuan penggunaan, kebijakan privasi, serta informasi mengenai keamanan data. Langkah tersebut membantu pengguna memahami hak dan kewajibannya sebelum membuat keputusan. Selain itu, pemain sebaiknya tidak langsung mempercayai klaim promosi yang beredar di internet karena informasi pemasaran belum tentu memberikan gambaran lengkap mengenai risiko dan ketentuan layanan.

Keamanan Data Harus Menjadi Prioritas

Keamanan digital menjadi aspek penting ketika seseorang menggunakan layanan berbasis internet. Pemain sebaiknya membuat kata sandi yang kuat, tidak membagikan informasi login kepada orang lain, dan menghindari penggunaan jaringan yang tidak terpercaya ketika mengakses akun. Pengguna juga perlu berhati-hati terhadap pesan yang meminta informasi pribadi atau mengarahkan mereka ke situs yang tidak dikenal. Dengan menerapkan kebiasaan keamanan dasar, pemain dapat mengurangi kemungkinan terjadinya penyalahgunaan akun dan pencurian informasi.

Memahami Risiko Permainan Online

Permainan online dapat memberikan hiburan, tetapi aktivitas tersebut juga memiliki risiko apabila dilakukan secara berlebihan. Pemain perlu memahami bahwa hasil permainan tertentu tidak selalu dapat diprediksi dan bahwa kerugian dapat terjadi. Oleh sebab itu, pengguna harus menetapkan batas yang jelas sebelum memulai aktivitas. Jika sebuah permainan mulai mengganggu kondisi keuangan, pekerjaan, hubungan sosial, atau rutinitas sehari-hari, pemain sebaiknya berhenti dan mengevaluasi kembali kebiasaannya.

Mengatur Waktu dan Anggaran

Pengelolaan waktu dan anggaran dapat membantu pemain menjaga aktivitas online tetap terkendali. Pemain dapat menentukan durasi penggunaan perangkat dan tidak melampaui batas yang sudah ditetapkan. Jika suatu aktivitas melibatkan transaksi, pengguna juga harus memahami seluruh biaya dan ketentuan yang berlaku sebelum melakukan pembayaran. Dengan cara tersebut, pemain dapat membedakan aktivitas hiburan dari kebutuhan sehari-hari serta menghindari keputusan impulsif.

Peran Teknologi dalam Pengalaman Pengguna

Teknologi terus mendorong perubahan pada pengalaman permainan online. Perangkat seluler yang semakin kuat, koneksi internet yang stabil, serta sistem antarmuka modern memungkinkan platform memberikan layanan yang lebih cepat dan interaktif. Di sisi lain, perkembangan tersebut juga menuntut pemain untuk meningkatkan literasi digital. Pengguna tidak hanya perlu mengetahui cara menggunakan sebuah layanan, tetapi juga harus mampu menilai informasi, mengenali risiko, dan memahami bagaimana data pribadi mereka diproses.

Bijak Mengikuti Tren Digital

Mengikuti tren permainan online tidak berarti seseorang harus mencoba setiap platform yang sedang populer. Pemain dapat mengambil pendekatan yang lebih kritis dengan membandingkan informasi, membaca ketentuan layanan, serta mempertimbangkan aspek keamanan sebelum mengambil keputusan. Popularitas di media sosial atau mesin pencari juga tidak dapat menjadi satu-satunya dasar penilaian. Dengan sikap kritis, pengguna dapat menikmati perkembangan teknologi tanpa mengabaikan tanggung jawab pribadi.

Kesimpulan

Tren permainan online menunjukkan bahwa teknologi digital terus mengubah cara masyarakat menikmati hiburan. Kemudahan akses, desain responsif, dan perkembangan teknologi membuat pengalaman pengguna semakin praktis. Namun, pemain tetap perlu memperhatikan keamanan data, memahami ketentuan layanan, mengatur waktu, serta menetapkan batas anggaran. Dengan literasi digital yang baik dan sikap bertanggung jawab, pengguna dapat menghadapi perkembangan permainan online secara lebih cerdas dan terukur.

Panduan CLICKBET88 untuk Pemula: Hal Penting yang Perlu Diketahui Sebelum Bermain

Mengenal Platform Sebelum Mulai

Bagi pemula, mengenal sebuah platform secara menyeluruh menjadi langkah penting sebelum mengambil keputusan apa pun. Banyak orang tertarik mencoba permainan daring karena tampilannya sederhana, pilihan permainannya beragam, dan aksesnya terasa praktis. Namun, pengguna tetap perlu memahami cara kerja platform, ketentuan penggunaan, serta risiko yang mungkin muncul. Dengan memahami informasi dasar sejak awal, pengguna dapat mengambil keputusan secara lebih sadar dan tidak terburu-buru.

Memahami Istilah dan Fitur Dasar

Setiap platform memiliki istilah dan fitur yang mungkin terasa asing bagi pengguna baru. Karena itu, luangkan waktu untuk membaca informasi yang tersedia sebelum menggunakan layanan. Ketika menemukan istilah yang belum dipahami, cari penjelasan terlebih dahulu daripada langsung mencobanya. Pendekatan tersebut membantu pengguna menghindari kesalahan akibat kurangnya informasi. Selain itu, pemahaman terhadap fitur juga membuat pengguna lebih mudah membedakan informasi resmi dari promosi yang berlebihan.

Menempatkan Informasi sebagai Prioritas

Informasi yang jelas menjadi salah satu faktor penting ketika seseorang mengevaluasi sebuah layanan daring. Dalam konteks clickbet88, pengguna sebaiknya memeriksa aturan, kebijakan, persyaratan penggunaan, serta informasi lain yang tersedia secara resmi. Jangan hanya mengandalkan iklan, unggahan media sosial, atau rekomendasi dari orang lain. Dengan membandingkan beberapa sumber informasi, pengguna dapat memperoleh gambaran yang lebih objektif sebelum menentukan langkah berikutnya.

Menentukan Batas Penggunaan

Pengguna juga perlu menetapkan batas yang tegas sejak awal. Permainan berbasis uang dapat menimbulkan risiko finansial apabila seseorang menggunakannya tanpa perencanaan. Oleh sebab itu, jangan menggunakan dana yang diperlukan untuk kebutuhan sehari-hari, tabungan, pendidikan, atau kewajiban lainnya. Tetapkan jumlah yang benar-benar dapat diterima sebagai risiko dan jangan menambahnya hanya karena ingin mengejar kerugian sebelumnya. Sikap disiplin seperti ini membantu seseorang menjaga keputusan tetap rasional.

Waspada terhadap Pola Mengejar Kerugian

Salah satu kesalahan yang perlu dihindari pemula adalah mencoba mengembalikan kerugian dengan terus bermain. Pola tersebut dapat membuat seseorang mengambil keputusan secara emosional. Ketika hasil tidak sesuai harapan, berhenti sejenak menjadi pilihan yang lebih aman daripada meningkatkan pengeluaran. Ingat bahwa hasil sebelumnya tidak menjamin hasil berikutnya. Karena itu, jangan menganggap kekalahan sebagai alasan untuk terus meningkatkan nominal penggunaan.

Memeriksa Keamanan Akun

Keamanan akun juga membutuhkan perhatian khusus. Gunakan kata sandi yang kuat dan berbeda dari kata sandi untuk layanan lain. Jangan membagikan kode verifikasi, kata sandi, atau informasi pribadi kepada pihak yang tidak dikenal. Selain itu, berhati-hatilah ketika menerima tautan yang meminta pengguna memasukkan data akun. Jika sebuah pesan terlihat mencurigakan, periksa sumbernya terlebih dahulu. Langkah sederhana tersebut dapat mengurangi risiko penyalahgunaan akun dan pencurian informasi pribadi.

Mengenali Promosi dengan Bijak

Promosi sering menjadi salah satu daya tarik utama platform permainan daring. Namun, pengguna tidak seharusnya menganggap promosi sebagai keuntungan tanpa syarat. Baca ketentuan secara lengkap karena bonus dapat memiliki persyaratan tertentu, batas waktu, atau aturan penggunaan. Jangan mengambil keputusan hanya karena melihat angka promosi yang besar. Sebaliknya, pahami seluruh ketentuan dan pertimbangkan apakah layanan tersebut benar-benar sesuai dengan kebutuhan serta batas pribadi.

Menghindari Sumber Tidak Resmi

Internet menyediakan banyak situs dan akun yang menggunakan nama serupa untuk menarik perhatian pengguna. Kondisi ini membuat pemula perlu lebih berhati-hati ketika mencari informasi atau mengakses sebuah layanan. Periksa alamat situs dan sumber informasi sebelum memasukkan data apa pun. Jangan mudah percaya pada tautan yang dikirim melalui pesan pribadi, terutama jika tautan tersebut menjanjikan hadiah atau keuntungan yang tidak masuk akal. Verifikasi menjadi langkah sederhana tetapi sangat penting dalam menjaga keamanan digital.

Menjaga Permainan Tetap sebagai Hiburan

Jika seseorang memilih untuk bermain, penting untuk memandangnya sebagai bentuk hiburan, bukan sebagai cara mendapatkan penghasilan tetap. Permainan yang melibatkan keberuntungan selalu memiliki unsur ketidakpastian. Karena itu, tidak ada strategi yang dapat menjamin kemenangan secara konsisten. Pemahaman tersebut membantu pengguna mengatur ekspektasi dan menghindari keyakinan bahwa kerugian pasti dapat dipulihkan pada sesi berikutnya.

Mengenali Tanda-Tanda Penggunaan yang Tidak Sehat

Pengguna juga perlu mengenali perubahan perilaku yang mungkin menunjukkan penggunaan mulai tidak terkendali. Contohnya adalah terus memikirkan permainan, mengabaikan pekerjaan atau aktivitas penting, menggunakan uang kebutuhan sehari-hari, atau merasa terdorong untuk bermain meskipun sudah mengalami kerugian. Jika tanda-tanda tersebut mulai muncul, sebaiknya hentikan penggunaan dan cari dukungan dari orang yang dipercaya. Mengambil jeda lebih awal jauh lebih baik daripada menunggu masalah berkembang.

Kesimpulan untuk Pemula

Menjadi pengguna yang bijak tidak hanya berarti memahami cara menggunakan sebuah platform, tetapi juga mengetahui batas, risiko, dan tanggung jawab pribadi. Pemula sebaiknya memprioritaskan informasi resmi, menjaga keamanan akun, membaca ketentuan promosi, serta menetapkan batas finansial yang jelas. Yang terpenting, jangan menganggap permainan daring sebagai sumber pendapatan yang pasti. Dengan pendekatan yang lebih kritis dan bertanggung jawab, pengguna dapat membuat keputusan berdasarkan informasi yang lebih baik serta mengurangi kemungkinan munculnya masalah di kemudian hari.

FINS88: Mengenal Platform, Login, dan Link Alternatif dengan Lebih Aman

Di tengah ramainya platform digital yang menawarkan berbagai layanan hiburan online, nama FINS88 cukup sering muncul dalam pencarian pengguna internet. Tidak sedikit orang yang mencari informasi seputar FINS88, mulai dari cara melakukan login FINS88 sampai pertanyaan mengenai link alternatif FINS88 ketika halaman utama sulit diakses.

Namun, sebelum menggunakan platform apa pun di internet, ada baiknya pengguna tidak hanya fokus pada kemudahan akses. Keamanan akun, perlindungan data pribadi, kejelasan informasi layanan, serta legalitas platform juga perlu menjadi perhatian. Jangan sampai karena ingin cepat masuk ke sebuah situs, pengguna justru mengabaikan aspek keamanan yang sebenarnya jauh lebih penting.

Mengenal FINS88 dan Informasi yang Perlu Diperhatikan

FINS88 merupakan nama yang dapat ditemukan dalam berbagai pencarian terkait platform hiburan online. Karena informasi mengenai suatu platform bisa berubah dari waktu ke waktu, pengguna sebaiknya memastikan bahwa informasi yang diperoleh berasal dari sumber resmi dan dapat dipercaya.

Hal yang paling penting adalah membedakan antara informasi resmi dengan halaman yang hanya menggunakan nama serupa. Di internet, terdapat kemungkinan munculnya situs tiruan, halaman phishing, atau tautan yang sengaja dibuat untuk mengambil data pengguna. Karena itu, jangan sembarangan memasukkan username, kata sandi, nomor telepon, maupun informasi pribadi pada halaman yang belum diverifikasi.

Jika tujuan pencarian adalah mengetahui layanan FINS88, lakukan pengecekan terlebih dahulu terhadap identitas pengelola, kebijakan privasi, ketentuan penggunaan, serta informasi lain yang tersedia secara resmi.

Panduan Login FINS88 dengan Memperhatikan Keamanan

Pencarian login FINS88 biasanya dilakukan ketika pengguna ingin mengakses akun yang sudah dimiliki. Secara umum, proses masuk ke sebuah platform digital membutuhkan informasi akun seperti username atau alamat email dan kata sandi.

Sebelum melakukan login, pastikan alamat situs sudah diperiksa dengan teliti. Jangan hanya melihat tampilan halaman karena situs palsu bisa dibuat menyerupai halaman asli. Periksa nama domain, koneksi HTTPS, dan sumber tautan yang digunakan.

Pengguna juga sebaiknya tidak menyimpan kata sandi pada perangkat yang digunakan bersama orang lain. Hindari pula menggunakan kata sandi yang sama untuk banyak layanan. Apabila tersedia fitur keamanan tambahan seperti autentikasi dua faktor, fitur tersebut layak dipertimbangkan.

Jika mengalami masalah ketika login FINS88, jangan langsung mencoba banyak tautan yang ditemukan melalui mesin pencari. Lebih baik mencari pusat bantuan atau kanal resmi yang berkaitan dengan platform tersebut.

Apa Itu Link Alternatif FINS88?

Istilah link alternatif FINS88 biasanya digunakan untuk menyebut alamat lain yang diklaim dapat digunakan ketika alamat utama sebuah platform tidak dapat diakses. Penyebab akses bermasalah sendiri bisa beragam, misalnya gangguan server, perubahan domain, kendala jaringan, atau pembatasan akses tertentu.

Meski begitu, pengguna perlu berhati-hati karena tidak semua halaman yang mengatasnamakan link alternatif FINS88 benar-benar dikelola oleh pihak yang sama. Tautan yang beredar melalui komentar, pesan pribadi, forum, atau akun media sosial yang tidak terverifikasi sebaiknya tidak langsung dipercaya.

Jangan pernah menganggap sebuah link aman hanya karena memiliki nama yang terlihat mirip dengan platform yang dicari. Perbedaan satu karakter pada alamat domain saja bisa mengarahkan pengguna ke situs yang berbeda.

Tips Mengenali Tautan yang Mencurigakan

Ada beberapa tanda yang dapat diperhatikan sebelum membuka sebuah tautan. Pertama, periksa alamat domain secara menyeluruh. Kedua, waspadai halaman yang meminta informasi sensitif secara berlebihan. Ketiga, hindari mengunduh aplikasi atau file dari sumber yang tidak jelas.

Pesan yang menggunakan kalimat mendesak seperti “akun akan segera diblokir” atau “harus login sekarang” juga perlu dicermati. Teknik semacam itu sering digunakan untuk membuat pengguna bertindak terburu-buru tanpa melakukan pemeriksaan.

Selain itu, jangan memberikan kode OTP, PIN, kata sandi, atau data keamanan akun kepada pihak lain. Pihak yang benar-benar mengelola layanan seharusnya memiliki prosedur bantuan resmi dan tidak membutuhkan pengguna untuk membagikan kredensial rahasia secara sembarangan.

Jangan Abaikan Legalitas dan Risiko Penggunaan

Selain keamanan digital, aspek legalitas juga penting. Status sebuah platform online dapat berbeda berdasarkan negara dan wilayah tempat pengguna berada. Karena itu, pengguna perlu memahami aturan setempat sebelum mengakses atau menggunakan layanan tertentu.

Jika FINS88 digunakan dalam konteks permainan atau aktivitas yang melibatkan uang, pertimbangkan pula risikonya secara matang. Aktivitas dengan unsur taruhan dapat menyebabkan kerugian finansial dan berpotensi menimbulkan kebiasaan yang sulit dikendalikan. Jangan menggunakan uang kebutuhan sehari-hari, dana darurat, atau uang pinjaman untuk aktivitas semacam itu.

Pengguna juga sebaiknya menentukan batas pengeluaran dan berhenti ketika batas tersebut sudah tercapai. Tidak ada strategi yang dapat menjamin keuntungan dalam aktivitas berbasis peluang.

Kesimpulan

FINS88 menjadi salah satu nama yang dapat ditemukan ketika pengguna mencari informasi mengenai platform hiburan online, termasuk login FINS88 dan link alternatif FINS88. Namun, kemudahan menemukan sebuah tautan di internet tidak otomatis berarti tautan tersebut aman atau resmi.

Prioritaskan pemeriksaan alamat situs, hindari memberikan data rahasia kepada pihak yang tidak dikenal, dan gunakan sumber resmi ketika membutuhkan informasi mengenai akun atau akses. Jangan lupa mempertimbangkan legalitas dan risiko finansial apabila layanan yang dituju melibatkan aktivitas berbasis taruhan.

Dengan pendekatan yang lebih hati-hati, pengguna dapat mengurangi risiko terkena situs palsu, pencurian akun, maupun kerugian yang tidak diinginkan. Internet memang menawarkan akses yang cepat, tetapi keamanan tetap harus menjadi prioritas utama.

Fusao Ikawa | stroke | Innovative Research Award

Innovative Research Award

Fusao Ikawa
Shimane Prefectural Central Hospital, Japan

Fusao Ikawa
Affiliation Shimane Prefectural Central Hospital
Country Japan
Scopus ID 7003483069
Documents 140
Citations 2,017
h-index 23
Subject Area Stroke
Event International Research Hypothesis Excellence Award
ORCID 0000-0003-4205-1490

Fusao Ikawa is a Japan-based researcher associated with Shimane Prefectural Central Hospital whose documented scholarly profile is centered on stroke and cerebrovascular research. The available bibliographic record identifies 140 documents, 2,017 citations, and an h-index of 23 under Scopus Author ID 7003483069. These indicators provide a quantitative overview of research visibility and scholarly output, while the publication record provides additional context concerning the scope of his research activities.[1]

Abstract

This academic recognition profile examines the research record of Fusao Ikawa, a researcher affiliated with Shimane Prefectural Central Hospital in Japan, in the context of the Innovative Research Award. The supplied Scopus information records 140 documents, 2,017 citations, and an h-index of 23, indicating a substantial body of indexed scholarly work and measurable citation activity. The publication portfolio includes research concerning surgical-site infection prevention in neurosurgery, cerebral small vessel disease, intracranial atherosclerotic disease, familial stroke burden, subarachnoid hemorrhage, artificial intelligence-assisted imaging assessment, and neurosurgical outcomes. [1]

Keywords

Fusao Ikawa; Innovative Research Award; stroke research; cerebrovascular disease; neurosurgery; neurointervention; subarachnoid hemorrhage; intracranial atherosclerotic disease; cerebral small vessel disease; artificial intelligence; machine learning; surgical-site infection; clinical neuroscience; research impact; Japan.

Introduction

Innovation in clinical research can arise through new procedures, improved diagnostic strategies, advanced analytical methods, translational applications, or the integration of technologies into established clinical workflows. In cerebrovascular medicine and neurosurgery, such innovation is particularly relevant because clinical outcomes may depend on rapid diagnosis, precise intervention, appropriate risk assessment, infection prevention, and increasingly sophisticated imaging and computational methods.[3] [4]

Research Profile

Fusao Ikawa is identified in the supplied data with Shimane Prefectural Central Hospital in Japan and a primary subject area of stroke. His Scopus Author ID is 7003483069. The supplied bibliometric profile lists 140 indexed documents, 2,017 citations, and an h-index of 23. [1]

Research Contributions

The supplied record indicates several areas of research contribution relevant to contemporary stroke and neurosurgical practice. These include procedural research, cerebrovascular epidemiology, clinical outcomes, infection prevention, advanced imaging, and computational approaches.

  • Neurovascular procedural research: The publication on temporary stent retriever deployment describes a stepwise procedural guide based on angiographic signs during treatment of intracranial atherosclerotic disease-related large-vessel occlusion.
  • Stroke epidemiology: Research on familial stroke burden examines associations with asymptomatic cerebrovascular lesions, contributing to understanding of inherited or familial risk contexts.

Publications

The following selected publications were supplied for this profile. They are presented in chronological order from the most recent listed work and retain the publication metadata and DOI information supplied in the source record.

  1. Impact of 1.5% Aqueous Olanexidine Against Surgical-Site Infections in Neurosurgery. Operative Neurosurgery.
  2. Obesity and Subclinical Cerebral Small Vessel Disease Burden in Asymptomatic Japanese Adults: Mediation by Hypertension.
  3. A Stepwise Procedural Guide Based on Angiographic Signs during Temporary Stent Retriever Deployment for Intracranial Atherosclerotic Disease–Related Large Vessel Occlusion.
  4. Graded Association of Familial Stroke Burden with Asymptomatic Cerebrovascular Lesion. Neuroepidemiology.

Research Impact

The supplied bibliometric profile records 2,017 citations across 140 documents and an h-index of 23. These figures indicate that the research output has received substantial citation activity within indexed scholarly literature. [1] Bibliometric indicators, however, should be considered together with publication quality, methodological rigor, clinical relevance, reproducibility, and contribution to the broader research community.

Award Suitability

Based solely on the supplied information, Fusao Ikawa’s research profile presents several characteristics that are relevant to consideration for an Innovative Research Award. These include a substantial indexed publication record, measurable citation activity, a sustained focus on stroke and cerebrovascular research, and documented engagement with contemporary technologies and clinical methodologies.The evidence supports eligibility for consideration rather than constituting an automatic award determination.

Conclusion

Fusao Ikawa’s supplied academic profile presents a substantial body of research centered on stroke, cerebrovascular disease, neurointervention, neurosurgery, and related clinical sciences. The combination of 140 documents, 2,017 citations, and an h-index of 23 provides quantitative evidence of an established scholarly record. [1]

References

  1. Elsevier. (n.d.). Scopus author details: Fusao Ikawa, Author ID 7003483069. Scopus.
    https://www.scopus.com/pages/authors/7003483069
  2. Yoshimoto, T., Ikawa, F., Chiku, M., Kawata, R., Maruyama, H., Yamagami, H., & Matsumaru, Y. (2026). Obesity and Subclinical Cerebral Small Vessel Disease Burden in Asymptomatic Japanese Adults: Mediation by Hypertension. DOI: 10.1159/ced/accag006.
    https://doi.org/10.1159/ced/accag006
  3. Hashimoto, Y., Ikawa, F., Hidaka, T., Abiko, M., & Horie, N. (2026). A Stepwise Procedural Guide Based on Angiographic Signs during Temporary Stent Retriever Deployment for Intracranial Atherosclerotic Disease–Related Large Vessel Occlusion. Neurointervention. DOI: 10.5469/neuroint.2026.00430.
    https://doi.org/10.5469/neuroint.2026.00430
  4. Omori, N., Ikawa, F., Chiku, M., Kawata, R., Yamaguchi, S., & Nagai, A. (2026). Graded Association of Familial Stroke Burden with Asymptomatic Cerebrovascular Lesion. Neuroepidemiology. DOI: 10.1159/000552064.
    https://doi.org/10.1159/000552064
  5. Inoue, Y., Katsuki, M., Hidaka, T., Ochiai, J., Kawamoto, Y., Ishii, D., Takizawa, K., Nakatomi, H., Chin, M., Mori, M., et al. (2026). Machine Learning-Identified Potential Interaction Between Clazosentan and Nicardipine in Patients with Subarachnoid Hemorrhage. Journal of Clinical Medicine. DOI: 10.3390/jcm15041383.
    https://doi.org/10.3390/jcm15041383

Eszter Zsédely | Livestock Nutrition | Best Researcher Award

Best Researcher Award

Eszter Zsédely
Széchenyi István University

           Eszter Zsédely
Affiliation Széchenyi István University
Country Hungary
Scopus ID 36106583200
Documents 13
Citations 97
h-index 6
Subject Area Livestock Nutrition
Event International Research Hypothesis Excellence Award

Eszter Zsédely is a researcher affiliated with Széchenyi István University in Győr, Hungary, whose scholarly work has contributed to the field of livestock nutrition and animal production sciences. Her publication record indexed in Scopus demonstrates sustained engagement in research related to feed resources, poultry nutrition, animal performance, and agricultural sustainability. With 13 indexed documents, 97 citations, and an h-index of 6, her academic profile reflects measurable scientific influence within her specialization.[1]

Abstract

This article presents an academic overview of Eszter Zsédely, a researcher associated with Széchenyi István University in Hungary. The profile summarizes her scholarly achievements, publication activity, citation performance, research themes, and scientific contributions within livestock nutrition. The assessment also considers her suitability for recognition through the International Research Hypothesis Excellence Award based on measurable academic indicators and documented research outputs.[1]

Keywords

Eszter Zsédely; Livestock Nutrition; Poultry Science; Animal Feed Research; Sustainable Agriculture; Broiler Nutrition; Academic Impact; Hungary; Scopus Author Profile; Research Excellence.

Introduction

Livestock nutrition remains a critical area of agricultural science due to its influence on animal welfare, production efficiency, food quality, and environmental sustainability. Researchers working in this field contribute to the development of innovative feeding strategies and alternative feed ingredients capable of improving productivity while reducing ecological impacts. Eszter Zsédely has participated in research efforts focused on these objectives through studies examining nutritional interventions and feed resource utilization in animal production systems.[2]

Research Profile

  • Researcher: Eszter Zsédely
  • Institution: Széchenyi István University, Győr, Hungary
  • Scopus Author ID: 36106583200
  • Indexed Documents: 13
  • Total Citations: 97
  • h-index: 6
  • Primary Subject Area: Livestock Nutrition

The available bibliometric indicators demonstrate consistent scholarly engagement within animal nutrition research. Her work has attracted citations from numerous scientific publications, indicating recognition by the broader research community and contributing to evidence-based advancements in agricultural science.[1]

Research Contributions

Eszter Zsédely’s research contributions are primarily associated with animal feeding systems, poultry nutrition, and the evaluation of alternative feed ingredients. Her scholarly activities have addressed issues related to nutrient utilization, production performance, feed sustainability, and meat quality characteristics in poultry production.[2]

  • Investigation of innovative feed resources for poultry diets.
  • Assessment of nutritional effects on broiler growth and performance.
  • Research on sensory and nutritional meat quality.

Publications

Among her documented scholarly outputs is a publication examining the dietary inclusion of defatted silkworm pupa meal in broiler chickens and its effects on nutritional and sensory meat quality. The study contributes to ongoing discussions regarding sustainable protein alternatives in animal nutrition and the optimization of poultry feeding systems.[2]

Research Impact

Research impact may be evaluated through publication productivity, citation performance, and the practical relevance of scientific outputs. With 97 citations across 89 citing documents and an h-index of 6, Eszter Zsédely has established a measurable academic presence within her research field. Her studies contribute to the scientific understanding of sustainable livestock nutrition and emerging feed technologies.[1]

Award Suitability

Based on available scholarly indicators, publication activity, citation performance, and demonstrated contributions to livestock nutrition research, Eszter Zsédely presents a profile that aligns with the objectives of the International Research Hypothesis Excellence Award. Her work reflects scientific rigor, interdisciplinary relevance, and engagement with practical challenges in animal agriculture.[1]

Conclusion

Eszter Zsédely has developed a scholarly profile characterized by contributions to livestock nutrition, animal feed innovation, and poultry science. Her publication record, citation metrics, and participation in research addressing sustainable agricultural production collectively demonstrate meaningful engagement with contemporary scientific challenges. These achievements support consideration for recognition through academic excellence awards and related international research honors.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Eszter Zsédely, Author ID 36106583200. Scopus.
    https://www.scopus.com/pages/authors/36106583200
  2. Dalle Zotte, A., Singh, Y., Zsédely, E., Palumbo, B., & Cullere, M. (2024). Dietary inclusion of defatted silkworm (Bombyx mori L.) pupa meal in broiler chickens: phase feeding effects on nutritional and sensory meat quality. Poultry Science.
    DOI: https://doi.org/10.1016/j.psj.2024.103735