Hao Yin

Active 2000–2026

705
Papers
36,805
Citations
92
h-index
395
i10-index

Citations

Citations per year for Hao Yin1964: 1 citations1989: 1 citations1994: 2 citations2002: 1 citations2003: 3 citations2004: 1 citations2005: 18 citations2006: 14 citations2007: 39 citations2008: 55 citations2009: 76 citations2010: 101 citations2011: 102 citations2012: 144 citations2013: 158 citations2014: 222 citations2015: 329 citations2016: 402 citations2017: 515 citations2018: 620 citations2019: 1,352 citations2020: 1,705 citations2021: 1,910 citations2022: 1,876 citations2023: 1,900 citations2024: 2,517 citations2025: 1,863 citations2026: 239 citations1965–1988: no citations, so these years are not shown1990–1993: no citations, so these years are not shown1995–2001: no citations, so these years are not shown

Citation sources

Countries

World map of the countries and regions citing this authorChina: 7,144 citing papers, 36.1% of this breakdownUnited States: 3,084 citing papers, 15.6% of this breakdownUnited Kingdom: 751 citing papers, 3.8% of this breakdownIndia: 695 citing papers, 3.5% of this breakdownCanada: 579 citing papers, 2.9% of this breakdownGermany: 566 citing papers, 2.9% of this breakdownAustralia: 455 citing papers, 2.3% of this breakdownSouth Korea: 446 citing papers, 2.2% of this breakdownJapan: 368 citing papers, 1.9% of this breakdownItaly: 366 citing papers, 1.8% of this breakdownFrance: 358 citing papers, 1.8% of this breakdownHong Kong: 298 citing papers, 1.5% of this breakdown
0%36.1%Other 23.7%

Fields

  • Biochemistry, Genetics and Molecular Biology36.5%
  • Computer Science24.3%
  • Engineering12.4%
  • Medicine10.9%
  • Agricultural and Biological Sciences3.6%
  • Physics and Astronomy3.2%
  • Other9.1%

Topics

  • RNA Interference and Gene Delivery5%
  • CRISPR and Genetic Engineering4.3%
  • Advanced biosensing and bioanalysis techniques3.5%
  • Virus-based gene therapy research1.8%
  • MicroRNA in disease regulation1.7%
  • Caching and Content Delivery1.6%
  • Other82.1%

Coauthors

All papers

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  1. Non-viral vectors for gene-based therapy

    Authors: , , , , , - Nature Reviews Genetics 2014 cited by 3,079

  2. Fast and sensitive detection of SARS-CoV-2 RNA using suboptimal protospacer adjacent motifs for Cas12a

    Authors: , , , , , , , , , , , , , , , - Nature Biomedical Engineering 2022 cited by 374

  3. Gene duplication and evolution in recurring polyploidization–diploidization cycles in plants

    Authors: , , , , , , , - Genome biology 2019 cited by 1,280

  4. Local Higher-Order Graph Clustering

    Authors: , , , - SIGKDD International Conference on Knowledge Discovery and Data Mining 2017 cited by 601

  5. Extracellular Vesicles from Child Gut Microbiota Enter into Bone to Preserve Bone Mass and Strength

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Yuxuan Qian, Youyou Li, Shi‐Kai Feng, Yang Chen, Luyue Qi, Ran Xu, Siyuan Tang, Hui Xie - Advanced Science 2021 cited by 230

  6. Lipopeptide nanoparticles for potent and selective siRNA delivery in rodents and nonhuman primates

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2014 cited by 481

  7. Glucocorticoid-induced loss of beneficial gut bacterial extracellular vesicles is associated with the pathogenesis of osteonecrosis

    Authors: , , , , , , , , , , , , , , , , - Science Advances 2022 cited by 211

  8. Structure-guided chemical modification of guide RNA enables potent non-viral in vivo genome editing

    Authors: , , , , , , , , , , , , , , , , , , , , - Nature Biotechnology 2017 cited by 504

  9. Exosomal DMBT1 from human urine-derived stem cells facilitates diabetic wound repair by promoting angiogenesis

    Authors: , , , , , , , , , , , , , , , , - Theranostics 2018 cited by 390

  10. ns3-ai: Fostering Artificial Intelligence Algorithms for Networking Research

    Authors: , , , , , , - Workshop on ns-3, WNS3 2020 cited by 106

  11. Therapeutic genome editing by combined viral and non-viral delivery of CRISPR system components in vivo

    Authors: , , , , , , , , , , , , , , , , , , , , , - Nature Biotechnology 2016 cited by 871

  12. Crisscross optimization algorithm and its application

    Authors: , , , - Knowledge-Based Systems, Knowl. Based Syst. 2014 cited by 252

  13. In vivo endothelial siRNA delivery using polymeric nanoparticles with low molecular weight

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Klaus Charissé, Mark W. Kieran, Kevin Fitzgerald, Matthias Nahrendorf, Dganit Danino, Rubin M. Tuder, Ulrich H. von Andrian, Akin Akinc, Dipak Panigrahy, Avi Schroeder, Victor Koteliansky, Róbert Langer, Daniel G. Anderson - Nature Nanotechnology 2014 cited by 573

  14. Delivery technologies for genome editing

    Authors: , , - Nature Reviews Drug Discovery 2017 cited by 581

  15. Human umbilical cord mesenchymal stromal cells-derived extracellular vesicles exert potent bone protective effects by CLEC11A-mediated regulation of bone metabolism

    Authors: , , , , , , , , , , , , , , - Theranostics 2020 cited by 173

  16. Efficient targeted insertion of large DNA fragments without DNA donors

    Authors: , , , , , , , , , , - Nature Methods 2022 cited by 165

  17. Aged bone matrix-derived extracellular vesicles as a messenger for calcification paradox

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , - Nature Communications 2022 cited by 161

  18. The genome of the pear (Pyrus bretschneideri Rehd.)

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Juan Wang, Leiting Li, Meisong Dai, Chao Gu, Yuezhi Wang, Daihu Shi, Xiaowei Wang, Huping Zhang, Liang Zeng, Danman Zheng, Chunlei Wang, Maoshan Chen, Guangbiao Wang, Lin Xie, Valpuri Sovero, Shoufeng Sha, Wenjiang Huang, Shujun Zhang, Mingyue Zhang, Jiangmei Sun, Lin-Lin Xu, Yuan Li, Xing Liu, Qingsong Li, Jiahui Shen, Junyi Wang, Robert E. Paull, Jeffrey L. Bennetzen, Jun Wang, Shaoling Zhang - Genome Research 2012 cited by 1,108

  19. Autophagy receptor OPTN (optineurin) regulates mesenchymal stem cell fate and bone-fat balance during aging by clearing FABP3

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , - Autophagy 2020 cited by 153

  20. Genome Editing with mRNA Encoding ZFN, TALEN, and Cas9

    Authors: , , - Molecular Therapy 2019 cited by 250

  21. Fast and sensitive CRISPR detection by minimized interference of target amplification

    Authors: , , , , , , , , , - Nature Chemical Biology 2024 cited by 106

  22. Aptamer-functionalized exosomes from bone marrow stromal cells target bone to promote bone regeneration

    Authors: , , , , , , , , , , , , , , , , - Nanoscale 2019 cited by 291

  23. CRISPR-mediated direct mutation of cancer genes in the mouse liver

    Authors: , , , , , , , , , , , , , - Nature 2014 cited by 794

  24. Chaos in fractional-order discrete neural networks with application to image encryption

    Authors: , , , , , - Neural Networks 2020 cited by 255