Yingkun Xu
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As a journalist, you can create a free Muck Rack account to customize your profile, list your contact preferences, and upload a portfolio of your best work.Articles
Micro-Opto-Electro-Mechanical Systems for High-Precision Displacement Sensing: A Review
Preprint Review Version 1 This version is not peer-reviewed Version 1 : Received: 26 July 2024 / Approved: 26 July 2024 / Online: 26 July 2024 (14:38:48 CEST) Xin, C.; Xu, Y.; Zhang, Z.; Li, M. Micro-Opto-Electro-Mechanical Systems for High-Precision Displacement Sensing: A Review. Preprints 2024, 2024072195. https://doi.org/10.20944/preprints202407.2195.v1 Xin, C.; Xu, Y.; Zhang, Z.; Li, M. Micro-Opto-Electro-Mechanical Systems for High-Precision Displacement Sensing: A Review.
A novel oxidative stress-related genes signature associated with clinical prognosis and immunotherapy responses in clear cell renal cell carcinoma
Introduction Renal cell carcinoma (RCC) is a common malignant tumor of genitourinary system with an incidence only secondary to prostate cancer and bladder cancer, affecting nearly 431,000 new patients and 179,000 related deaths in 2020 worldwide (1). Clear cell renal cell carcinoma (ccRCC) is the most prevalent histological types of RCC, which accounting for about 70-80% of RCC (2).
Identification of cuproptosis-related molecular subtypes and a novel predictive model of COVID-19 based on machine learning
Hong Luo1, Jisong Yan1, Dingyu Zhang2,3,4 and Xia Zhou1* 1Department of Tuberculosis and Respiratory, Wuhan Jinyintan Hospital, Tongji Medical College of Huazhong University of Science and Technology; Hubei Clinical Research Center for Infectious Diseases; Wuhan Research Center for Communicable Disease Diagnosis and Treatment, Chinese Academy of Medical Sciences; Joint Laboratory of Infectious Diseases and Health, Wuhan Institute of Virology and Wuhan Jinyintan Hospital, Chinese Academy of...
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