Yiman Wu

1.1k total citations
37 papers, 841 citations indexed

About

Yiman Wu is a scholar working on Molecular Biology, Biomedical Engineering and Materials Chemistry. According to data from OpenAlex, Yiman Wu has authored 37 papers receiving a total of 841 indexed citations (citations by other indexed papers that have themselves been cited), including 14 papers in Molecular Biology, 8 papers in Biomedical Engineering and 7 papers in Materials Chemistry. Recurrent topics in Yiman Wu's work include Metabolomics and Mass Spectrometry Studies (8 papers), Analytical Chemistry and Chromatography (3 papers) and Prostate Cancer Diagnosis and Treatment (3 papers). Yiman Wu is often cited by papers focused on Metabolomics and Mass Spectrometry Studies (8 papers), Analytical Chemistry and Chromatography (3 papers) and Prostate Cancer Diagnosis and Treatment (3 papers). Yiman Wu collaborates with scholars based in China, Canada and United States. Yiman Wu's co-authors include Liang Li, Guohui Lin, Tao Huan, Avalyn Stanislaus, Jiamin Zheng, Yi Shi, Jianjun Zhou, David S. Wishart, Ke Huang and Joël H. Weiner and has published in prestigious journals such as Annals of Internal Medicine, Analytical Chemistry and The Science of The Total Environment.

In The Last Decade

Yiman Wu

32 papers receiving 831 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Yiman Wu China 13 597 216 166 85 69 37 841
M. Calderón-Santiago Spain 22 625 1.0× 265 1.2× 322 1.9× 31 0.4× 148 2.1× 54 1.1k
Xiaoyu Hu China 17 608 1.0× 75 0.3× 94 0.6× 26 0.3× 97 1.4× 20 943
Joana Carrola Portugal 10 390 0.7× 122 0.6× 188 1.1× 27 0.3× 29 0.4× 15 730
Shiyu Sun China 18 566 0.9× 45 0.2× 74 0.4× 41 0.5× 45 0.7× 52 985
Norman H. L. Chiu United States 14 528 0.9× 111 0.5× 131 0.8× 41 0.5× 82 1.2× 47 863
Diego Cobice United Kingdom 17 509 0.9× 465 2.2× 77 0.5× 26 0.3× 29 0.4× 43 1.1k
Kristaps Klavins Austria 18 566 0.9× 144 0.7× 95 0.6× 18 0.2× 202 2.9× 44 1.0k
Miku Kaneko Japan 15 444 0.7× 79 0.4× 157 0.9× 12 0.1× 244 3.5× 26 810
Ji‐Seon Jeong South Korea 16 326 0.5× 155 0.7× 130 0.8× 12 0.1× 54 0.8× 66 714
Lucia Puricelli Italy 15 345 0.6× 101 0.5× 81 0.5× 10 0.1× 164 2.4× 37 868

Countries citing papers authored by Yiman Wu

Since Specialization
Citations

This map shows the geographic impact of Yiman Wu'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 Yiman Wu with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Yiman Wu more than expected).

Fields of papers citing papers by Yiman Wu

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Yiman Wu. 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 Yiman Wu. The network helps show where Yiman Wu may publish in the future.

Co-authorship network of co-authors of Yiman Wu

This figure shows the co-authorship network connecting the top 25 collaborators of Yiman Wu. A scholar is included among the top collaborators of Yiman Wu 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 Yiman Wu. Yiman Wu 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.
Tang, Wei, et al.. (2025). Friction-Induced Pain: From Skin Surface to Brain Activation. IEEE Transactions on Neural Systems and Rehabilitation Engineering. 33. 532–541.
4.
Chen, Zhihao, Mingyu Liang, Si Zhang, et al.. (2025). Flavonoids serve as a promising therapeutic agent for ischemic stroke. Brain Research. 1853. 149528–149528. 1 indexed citations
5.
Wu, Yiman, et al.. (2025). Filter‐Assisted ICP‐MS Tumor Liquid Biopsy Enabled by Dual‐Target‐Regulated Functional DNA Nanospheres Cascade Amplification. Small Methods. 9(8). e2500314–e2500314. 4 indexed citations
6.
Wu, Yiman, Xiaoling Su, Yifei Wang, et al.. (2025). Emerging tick-borne diseases in mainland China over the past decade: a systematic review and mapping analysis. The Lancet Regional Health - Western Pacific. 59. 101599–101599. 1 indexed citations
7.
Wu, Yiman, et al.. (2025). Bmal1 deficiency disrupts autophagy–apoptosis equilibrium in a hyperandrogenic PCOS-like rat model. Reproductive BioMedicine Online. 51(3). 104972–104972. 1 indexed citations
8.
Song, Xuemei, et al.. (2024). A three-mode biosensor for hypoxanthine assay in aquatic products under various storage conditions. Food Chemistry. 451. 139453–139453. 4 indexed citations
9.
Wu, Yiman, Feng Xu, Chunhui Wu, et al.. (2024). Preparation of Ni/Co layered double hydroxide hollow cakes as an electrochemical sensing platform for monitoring the production of hydrogen peroxide in formulated beverages. Microchemical Journal. 202. 110793–110793. 2 indexed citations
10.
Wu, Yiman, Jie Liu, Shuqi Li, et al.. (2024). Construction of a triple-mode sensing platform for effective differentiation, speciation, and monitoring of mercury and methylmercury bioaccumulation in crayfish via cation exchange reaction. The Science of The Total Environment. 954. 176416–176416. 1 indexed citations
11.
Yan, Tengfeng, Zhihao Chen, Yang Xu, et al.. (2024). β-Ketoenamine covalent organic framework nanoplatform combined with immune checkpoint blockade via photodynamic immunotherapy inhibit glioblastoma progression. Bioactive Materials. 44. 531–543. 5 indexed citations
12.
Hu, Kelin, Xin Chen, Xue Song, et al.. (2023). Carbon dots and MnO2 nanosheet nanocomposites sensing platform for sensitive detection of oxalate in urine samples of urolithiasis patients. Talanta. 266(Pt 1). 124976–124976. 15 indexed citations
13.
Zhang, Quan, Yuhua Xie, Xia Zhang, et al.. (2023). Construction of Ternary PtRuPd Alloy Supported on Carbon Nanotubes for Concentrated Methanol Oxidation. ChemCatChem. 15(10). 5 indexed citations
14.
Hu, Kelin, et al.. (2023). Carbon dots@zeolitic imidazolate framework nanoprobe for direct and sensitive butyrylcholinesterase assay with non-enzymatic reaction. Sensors and Actuators B Chemical. 387. 133825–133825. 30 indexed citations
15.
Ren, Wei, Yiman Wu, & Yuchen Peng. (2023). Effects of task complexity, task sequence, and interlocutor familiarity on Chinese EFL learners’ self-repair in synchronous online interaction. Language Teaching Research. 30(3). 1544–1561. 3 indexed citations
17.
Li, Wei, et al.. (2019). Comparison of diagnostic performance between two prostate imaging reporting and data system versions: A systematic review. European Journal of Radiology. 114. 111–119. 5 indexed citations
18.
Sun, Hongxia, et al.. (2019). P1.14-31 Lack of Association Between BIM Deletion Polymorphism and Clinical Efficacy of EGFR-TKIs in NSCLC Based on NGS. Journal of Thoracic Oncology. 14(10). S566–S566. 1 indexed citations
19.
Wu, Yiman, Femke Streijger, Yining Wang, et al.. (2016). Parallel Metabolomic Profiling of Cerebrospinal Fluid and Serum for Identifying Biomarkers of Injury Severity after Acute Human Spinal Cord Injury. Scientific Reports. 6(1). 38718–38718. 39 indexed citations
20.
Wu, Yiman & Liang Li. (2015). Sample normalization methods in quantitative metabolomics. Journal of Chromatography A. 1430. 80–95. 213 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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