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Chunyu Liu

Showing results (661-670 of 749) with videos related to

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Medrxiv : the Preprint Server for Health Sciences|December 18, 2023
Mitochondrial DNA Copy Number Variation in Asthma Risk, Severity, and ExacerbationsWeiling Xu, Yun Soo Hong, Bo Hu, et al.
Journal of Medical Genetics|February 14, 2020
Homozygous mutations in <i>DZIP1</i> can induce asthenoteratospermia with severe MMAFMingrong Lv, Wangjie Liu, Wangfei Chi, et al.
American Journal of Human Genetics|August 14, 2020
Bi-allelic Loss-of-function Variants in CFAP58 Cause Flagellar Axoneme and Mitochondrial Sheath Defects and Asthenoteratozoospermia in Humans and MiceXiaojin He, Chunyu Liu, Xiaoyu Yang, et al.
American Journal of Medical Genetics. Part B, Neuropsychiatric Genetics : the Official Publication of the International Society of Psychiatric Genetics|July 10, 2025
Equitable Collaboration Between LMIC and HIC Researchers, Part I: A Preliminary Framework for Capacity Building in Psychiatric Genetics ResearchBrenda Cabrera-Mendoza, Margit Burmeister, Marcella Rietschel, et al.
Circulation. Cardiovascular Genetics|February 19, 2017
Epigenetic Patterns in Blood Associated With Lipid Traits Predict Incident Coronary Heart Disease Events and Are Enriched for Results From Genome-Wide Association StudiesÅsa K Hedman, Michael M Mendelson, Riccardo E Marioni, et al.
Nature Communications|September 30, 2023
Deleterious heteroplasmic mitochondrial mutations are associated with an increased risk of overall and cancer-specific mortalityYun Soo Hong, Stephanie L Battle, Wen Shi, et al.
American Journal of Human Genetics|January 20, 2021
Deleterious variants in X-linked CFAP47 induce asthenoteratozoospermia and primary male infertilityChunyu Liu, Chaofeng Tu, Lingbo Wang, et al.
The Journal of Experimental Medicine|October 30, 2019
A DNAH17 missense variant causes flagella destabilization and asthenozoospermiaBeibei Zhang, Hui Ma, Teka Khan, et al.
Zoological Research|July 15, 2024
Study of tree shrew biology and models: A booming and prosperous field for biomedical researchYong-Gang Yao, Li Lu, Rong-Jun Ni, et al.
Elife|November 7, 2023
Novel axonemal protein ZMYND12 interacts with TTC29 and DNAH1, and is required for male fertility and flagellum functionDenis Dacheux, Guillaume Martinez, Christine E Broster Reix, et al.
Pageof 75

Showing results (661-670 of 749) with videos related to

Sort By:
Pageof 75
Medrxiv : the Preprint Server for Health Sciences|December 18, 2023
Mitochondrial DNA Copy Number Variation in Asthma Risk, Severity, and ExacerbationsWeiling Xu, Yun Soo Hong, Bo Hu, et al.
Journal of Medical Genetics|February 14, 2020
Homozygous mutations in <i>DZIP1</i> can induce asthenoteratospermia with severe MMAFMingrong Lv, Wangjie Liu, Wangfei Chi, et al.
American Journal of Human Genetics|August 14, 2020
Bi-allelic Loss-of-function Variants in CFAP58 Cause Flagellar Axoneme and Mitochondrial Sheath Defects and Asthenoteratozoospermia in Humans and MiceXiaojin He, Chunyu Liu, Xiaoyu Yang, et al.
American Journal of Medical Genetics. Part B, Neuropsychiatric Genetics : the Official Publication of the International Society of Psychiatric Genetics|July 10, 2025
Equitable Collaboration Between LMIC and HIC Researchers, Part I: A Preliminary Framework for Capacity Building in Psychiatric Genetics ResearchBrenda Cabrera-Mendoza, Margit Burmeister, Marcella Rietschel, et al.
Circulation. Cardiovascular Genetics|February 19, 2017
Epigenetic Patterns in Blood Associated With Lipid Traits Predict Incident Coronary Heart Disease Events and Are Enriched for Results From Genome-Wide Association StudiesÅsa K Hedman, Michael M Mendelson, Riccardo E Marioni, et al.
Nature Communications|September 30, 2023
Deleterious heteroplasmic mitochondrial mutations are associated with an increased risk of overall and cancer-specific mortalityYun Soo Hong, Stephanie L Battle, Wen Shi, et al.
American Journal of Human Genetics|January 20, 2021
Deleterious variants in X-linked CFAP47 induce asthenoteratozoospermia and primary male infertilityChunyu Liu, Chaofeng Tu, Lingbo Wang, et al.
The Journal of Experimental Medicine|October 30, 2019
A DNAH17 missense variant causes flagella destabilization and asthenozoospermiaBeibei Zhang, Hui Ma, Teka Khan, et al.
Zoological Research|July 15, 2024
Study of tree shrew biology and models: A booming and prosperous field for biomedical researchYong-Gang Yao, Li Lu, Rong-Jun Ni, et al.
Elife|November 7, 2023
Novel axonemal protein ZMYND12 interacts with TTC29 and DNAH1, and is required for male fertility and flagellum functionDenis Dacheux, Guillaume Martinez, Christine E Broster Reix, et al.
Pageof 75