Shafaqat Ali

2007–2025 年に発表

157
論文数
29,020
被引用数
84
h 指数
140
i10 指数

被引用数

Shafaqat Ali の年別被引用数2007 年: 被引用 1 件2008 年: 被引用 14 件2009 年: 被引用 23 件2010 年: 被引用 20 件2011 年: 被引用 28 件2012 年: 被引用 39 件2013 年: 被引用 27 件2014 年: 被引用 30 件2015 年: 被引用 92 件2016 年: 被引用 124 件2017 年: 被引用 172 件2018 年: 被引用 164 件2019 年: 被引用 456 件2020 年: 被引用 481 件2021 年: 被引用 604 件2022 年: 被引用 467 件2023 年: 被引用 368 件2024 年: 被引用 543 件2025 年: 被引用 262 件2026 年: 被引用 5 件

引用元

国・地域

この著者を引用した国・地域の世界地図中国: 引用元論文 1,140 件、この内訳の 23.1%パキスタン: 引用元論文 472 件、この内訳の 9.5%アメリカ合衆国: 引用元論文 418 件、この内訳の 8.5%インド: 引用元論文 389 件、この内訳の 7.9%サウジアラビア: 引用元論文 227 件、この内訳の 4.6%エジプト: 引用元論文 143 件、この内訳の 2.9%韓国: 引用元論文 141 件、この内訳の 2.8%ドイツ: 引用元論文 131 件、この内訳の 2.6%イラン: 引用元論文 124 件、この内訳の 2.5%オーストラリア: 引用元論文 120 件、この内訳の 2.4%イギリス: 引用元論文 118 件、この内訳の 2.4%日本: 引用元論文 84 件、この内訳の 1.7%
0%23.1%その他 29.1%

分野

  • Agricultural and Biological Sciences31.3%
  • Environmental Science19.1%
  • Immunology and Microbiology10.6%
  • Biochemistry, Genetics and Molecular Biology10.3%
  • Medicine8%
  • Materials Science6.3%
  • その他14.4%

トピック

  • Plant Stress Responses and Tolerance7.1%
  • Heavy metals in environment6.1%
  • IL-33, ST2, and ILC Pathways3%
  • Selenium in Biological Systems2.7%
  • Nanoparticles: synthesis and applications2.6%
  • Plant tissue culture and regeneration2.4%
  • その他76.1%

共著者

全論文

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  1. The influence of pH and organic matter content in paddy soil on heavy metal availability and their uptake by rice plants

    著者: , , , , , , - Environmental Pollution 2010 被引用: 1,277

  2. Physiological and biochemical changes during drought and recovery periods at tillering and jointing stages in wheat (Triticum aestivum L.)

    著者: , , , , , , , - Scientific Reports 2018 被引用: 559

  3. Cadmium uptake and translocation: selenium and silicon roles in Cd detoxification for the production of low Cd crops: a critical review

    著者: , , , , , , - Chemosphere 2021 被引用: 234

  4. Sources of Type I Interferons in Infectious Immunity: Plasmacytoid Dendritic Cells Not Always in the Driver's Seat

    著者: , , , , , - Frontiers in Immunology 2019 被引用: 171

  5. Zinc and iron oxide nanoparticles improved the plant growth and reduced the oxidative stress and cadmium concentration in wheat

    著者: , , , , , , , - Chemosphere 2018 被引用: 931

  6. Plant growth promoting rhizobacteria alleviates drought stress in potato in response to suppressive oxidative stress and antioxidant enzymes activities

    著者: , , , , , , , , , , , - Scientific Reports 2020 被引用: 404

  7. A Critical Review on the Synthesis of Natural Sodium Alginate Based Composite Materials: An Innovative Biological Polymer for Biomedical Delivery Applications

    著者: , , , , , , , , , , - Processes 2021 被引用: 166

  8. Interactive effects of drought and heat stresses on morpho-physiological attributes, yield, nutrient uptake and oxidative status in maize hybrids

    著者: , , , , , , , , , , - Scientific Reports 2019 被引用: 623

  9. Drinking Water Quality Status and Contamination in Pakistan

    著者: , , , , , , , , , , , - BioMed Research International 2017 被引用: 476

  10. The effect of excess copper on growth and physiology of important food crops: a review

    著者: , , , , , , , , - Environmental Science and Pollution Research 2015 被引用: 771

  11. The C-C Chemokines CCL17 and CCL22 and Their Receptor CCR4 in CNS Autoimmunity

    著者: , , , , - International Journal of Molecular Sciences 2017 被引用: 145

  12. Cadmium minimization in wheat: A critical review

    著者: , , , , , , , - Ecotoxicology and Environmental Safety 2016 被引用: 652

  13. The Dual Function Cytokine IL-33 Interacts with the Transcription Factor NF-κB To Dampen NF-κB–Stimulated Gene Transcription

    著者: , , , , , , - The Journal of Immunology 2011 被引用: 317

  14. Zinc oxide nanoparticles alter the wheat physiological response and reduce the cadmium uptake by plants

    著者: , , , , , , , - Environmental Pollution 2018 被引用: 458

  15. Seed priming with silicon nanoparticles improved the biomass and yield while reduced the oxidative stress and cadmium concentration in wheat grains

    著者: , , , - Environmental Science and Pollution Research 2019 被引用: 424

  16. Guidelines for mouse and human DC generation

    著者: , , , , , , , , , , , , , , , , , , , , , , , , , - European Journal of Immunology 2022 被引用: 54

  17. PGPR-Mediated Salt Tolerance in Maize by Modulating Plant Physiology, Antioxidant Defense, Compatible Solutes Accumulation and Bio-Surfactant Producing Genes

    著者: , , , , , , , , , , , - Plants 2022 被引用: 254

  18. Amelioration of salt induced toxicity in pearl millet by seed priming with silver nanoparticles (AgNPs): The oxidative damage, antioxidant enzymes and ions uptake are major determinants of salt tolerant capacity

    著者: , , , , , , , , , , , , - Plant Physiology and Biochemistry 2020 被引用: 342

  19. Interactive effect of salinity and silver nanoparticles on photosynthetic and biochemical parameters of wheat

    著者: , , , , , - Archives of Agronomy and Soil Science 2017 被引用: 263

  20. Mitigation of Heat Stress in Solanum lycopersicum L. by ACC-deaminase and Exopolysaccharide Producing Bacillus cereus: Effects on Biochemical Profiling

    著者: , , , , , , , , , , , - Sustainability 2020 被引用: 226

  21. Calcium nanoparticles (Ca-NPs) improve drought stress tolerance in Brassica napus by modulating the photosystem II, nutrient acquisition and antioxidant performance

    著者: , , , , , , , , , , - NanoImpact 2022 被引用: 102

  22. Effects of selenium on the uptake of toxic trace elements by crop plants: A review

    著者: , , , , , , , , , , - Critical Reviews in Environmental Science and Technology 2020 被引用: 91

  23. Effect of metal and metal oxide nanoparticles on growth and physiology of globally important food crops: A critical review

    著者: , , , , , , , , - Journal of Hazardous Materials 2016 被引用: 566

  24. A critical review on effects, tolerance mechanisms and management of cadmium in vegetables

    著者: , , , , , , , , , - Chemosphere 2017 被引用: 507