Taiki Miyazawa

2.3k total citations · 1 hit paper
50 papers, 1.5k citations indexed

About

Taiki Miyazawa is a scholar working on Molecular Biology, Nutrition and Dietetics and Physiology. According to data from OpenAlex, Taiki Miyazawa has authored 50 papers receiving a total of 1.5k indexed citations (citations by other indexed papers that have themselves been cited), including 18 papers in Molecular Biology, 13 papers in Nutrition and Dietetics and 11 papers in Physiology. Recurrent topics in Taiki Miyazawa's work include Antioxidant Activity and Oxidative Stress (9 papers), Curcumin's Biomedical Applications (7 papers) and Vitamin C and Antioxidants Research (6 papers). Taiki Miyazawa is often cited by papers focused on Antioxidant Activity and Oxidative Stress (9 papers), Curcumin's Biomedical Applications (7 papers) and Vitamin C and Antioxidants Research (6 papers). Taiki Miyazawa collaborates with scholars based in Japan, United States and India. Taiki Miyazawa's co-authors include Teruo Miyazawa, Kiyotaka Nakagawa, Gregor Carpentero Burdeos, Fumiko Kimura, Chizumi Abe, Akira Matsumoto, Akira Satoh, Takehiro Kiko, Yuji Miyahara and Kazunori Kataoka and has published in prestigious journals such as The Journal of Experimental Medicine, SHILAP Revista de lepidopterología and Journal of Agricultural and Food Chemistry.

In The Last Decade

Taiki Miyazawa

49 papers receiving 1.4k citations

Hit Papers

Microgreens—A Comprehensi... 2023 2026 2024 2023 25 50 75

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Taiki Miyazawa Japan 21 446 287 213 197 144 50 1.5k
Tatiana Armeni Italy 26 595 1.3× 160 0.6× 117 0.5× 171 0.9× 101 0.7× 67 1.7k
Marie Véronique Clément Singapore 10 644 1.4× 301 1.0× 139 0.7× 157 0.8× 156 1.1× 12 1.7k
Lidija Milković Croatia 23 828 1.9× 172 0.6× 177 0.8× 167 0.8× 179 1.2× 53 2.0k
Abeer Salama Egypt 30 625 1.4× 105 0.4× 187 0.9× 140 0.7× 210 1.5× 165 2.8k
Cecilia Prata Italy 24 822 1.8× 183 0.6× 392 1.8× 219 1.1× 195 1.4× 54 2.1k
Gwang‐Mo Yang South Korea 16 698 1.6× 218 0.8× 102 0.5× 151 0.8× 101 0.7× 24 2.2k
Shivkanya Fuloria Malaysia 30 853 1.9× 223 0.8× 101 0.5× 132 0.7× 208 1.4× 130 2.8k
Guruprasad Kalthur India 30 574 1.3× 86 0.3× 159 0.7× 102 0.5× 103 0.7× 127 2.8k

Countries citing papers authored by Taiki Miyazawa

Since Specialization
Citations

This map shows the geographic impact of Taiki Miyazawa's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Taiki Miyazawa with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Taiki Miyazawa more than expected).

Fields of papers citing papers by Taiki Miyazawa

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Taiki Miyazawa. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Taiki Miyazawa. The network helps show where Taiki Miyazawa may publish in the future.

Co-authorship network of co-authors of Taiki Miyazawa

This figure shows the co-authorship network connecting the top 25 collaborators of Taiki Miyazawa. A scholar is included among the top collaborators of Taiki Miyazawa based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Taiki Miyazawa. Taiki Miyazawa is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Bhaswant, Maharshi, et al.. (2025). Comparative analysis of microgreens and germinated seeds from three Brassicaceae cultivars: Macro- and micro-nutrient and glucosinolate composition. Journal of Food Composition and Analysis. 144. 107673–107673.
2.
Miyazawa, Taiki, Taiki Miyazawa, Masako Toda, et al.. (2025). Lipid Composition Analysis of Cricket Oil from Crickets Fed with Broken Rice-Derived Bran. Insects. 16(9). 951–951. 1 indexed citations
3.
Bhaswant, Maharshi, et al.. (2024). Comparative analysis of macro- and micro-nutrients of Perilla frutescens var. crispa f. viridis microgreens and germinated seeds. Food Chemistry. 455. 139858–139858. 4 indexed citations
4.
Yamashita, Shinji, et al.. (2023). Marine Plasmalogens: A Gift from the Sea with Benefits for Age-Associated Diseases. Molecules. 28(17). 6328–6328. 7 indexed citations
5.
Miyazawa, Taiki, Chizumi Abe, Takahiro Ueno, et al.. (2023). Hypolipidemic and Anti-Inflammatory Effects of Curcuma longa-Derived Bisacurone in High-Fat Diet-Fed Mice. International Journal of Molecular Sciences. 24(11). 9366–9366. 8 indexed citations
7.
Miyazawa, Taiki, et al.. (2023). Functional components of walnuts: a review focusing on native and cultivated species. Food Science and Technology Research. 30(1). 1–12. 4 indexed citations
8.
Bhaswant, Maharshi, Taiki Miyazawa, Taiki Miyazawa, et al.. (2023). Microgreens—A Comprehensive Review of Bioactive Molecules and Health Benefits. Molecules. 28(2). 867–867. 79 indexed citations breakdown →
9.
Abe, Chizumi, et al.. (2023). The Potential Use of Exosomes in Anti-Cancer Effect Induced by Polarized Macrophages. Pharmaceutics. 15(3). 1024–1024. 10 indexed citations
10.
Miyazawa, Taiki, Chizumi Abe, Gregor Carpentero Burdeos, Akira Matsumoto, & Masako Toda. (2022). Food Antioxidants and Aging: Theory, Current Evidence and Perspectives. MACAU (Kiel University). 2(3). 181–204. 12 indexed citations
11.
Miyazawa, Taiki, Taiki Miyazawa, Chizumi Abe, et al.. (2022). Biological functions of compounds from Bacillus subtilis and its subspecies, Bacillus subtilis natto. SHILAP Revista de lepidopterología. 1(3-4). 241–251. 10 indexed citations
12.
Abe, Chizumi, et al.. (2022). Current Use of Fenton Reaction in Drugs and Food. Molecules. 27(17). 5451–5451. 80 indexed citations
13.
Miyazawa, Taiki, Taiki Miyazawa, Ohki Higuchi, et al.. (2021). Removal of chlorophyll and pheophorbide from Chlorella pyrenoidosa by supercritical fluid extraction: potential of protein resource. Bioscience Biotechnology and Biochemistry. 85(7). 1759–1762. 3 indexed citations
14.
Ozawa, Hitoshi, et al.. (2021). Effects of Dietary Food Components on Cognitive Functions in Older Adults. Nutrients. 13(8). 2804–2804. 27 indexed citations
15.
Miyazawa, Taiki, et al.. (2021). A Critical Review of the Use of Surfactant-Coated Nanoparticles in Nanomedicine and Food Nanotechnology. International Journal of Nanomedicine. Volume 16. 3937–3999. 133 indexed citations
16.
Igarashi, Kazunori, Taiki Miyazawa, Shigeto Fukushima, et al.. (2020). Structural Control of Boronic Acid Ligands Enhances Intratumoral Targeting of Sialic Acid To Eradicate Cancer Stem-like Cells. ACS Applied Bio Materials. 3(8). 5030–5039. 24 indexed citations
17.
Tanaka, Miyako, Kozue Ochi, Yuki Sugiura, et al.. (2020). C-type lectin Mincle mediates cell death–triggered inflammation in acute kidney injury. The Journal of Experimental Medicine. 217(11). 49 indexed citations
18.
Miyazawa, Taiki, et al.. (2019). Vitamin E: Regulatory Redox Interactions. IUBMB Life. 71(4). 430–441. 217 indexed citations
19.
Matsumoto, Akira, et al.. (2017). Heterocyclic boronic acids display sialic acid selective binding in a hypoxic tumor relevant acidic environment. Chemical Science. 8(9). 6165–6170. 55 indexed citations
20.
Nishida, Takehiro, Bayaru ERUDEN, Kenji Hosoda, et al.. (2006). Effects of Green Tea (Camellia sinensis) Waste Silage and Polyethylene Glycol on Ruminal Fermentation and Blood Components in Cattle. Asian-Australasian Journal of Animal Sciences. 19(12). 1728–1736. 19 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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