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MeSH:(Dextrocardia)

1.A novel homozygous mutation of CFAP300 identified in a Chinese patient with primary ciliary dyskinesia and infertility.

Zheng ZHOU ; Qi QI ; Wen-Hua WANG ; Jie DONG ; Juan-Juan XU ; Yu-Ming FENG ; Zhi-Chuan ZOU ; Li CHEN ; Jin-Zhao MA ; Bing YAO

Asian Journal of Andrology 2025;27(1):113-119

2.Clinical and genetic analysis of a case of Kartagener syndrome with obstructive azoospermia induced by biallelic variation of CCDC114.

Mei-Jiao CAI ; Mei-Jiao XIN ; Yu-Lin WANG

National Journal of Andrology 2025;31(2):108-114

3.Identification of a novel splice site mutation in the DNAAF4 gene of a Chinese patient with primary ciliary dyskinesia.

Yang XU ; Jing WANG ; Ji-Hai LIU ; Qing-Qiang GAO ; Bing WANG ; Zhi-Peng XU

Asian Journal of Andrology 2023;25(6):713-718

4.Lack of CFAP54 causes primary ciliary dyskinesia in a mouse model and human patients.

Xinyue ZHAO ; Haijun GE ; Wenshuai XU ; Chongsheng CHENG ; Wangji ZHOU ; Yan XU ; Junping FAN ; Yaping LIU ; Xinlun TIAN ; Kai-Feng XU ; Xue ZHANG

Frontiers of Medicine 2023;17(6):1236-1249

5.Genetic analysis of a child with Kartagener syndrome due to novel compound heterozygous variants of DNAH5 gene.

Shan ZHANG ; Chaobing WANG ; Yong ZHANG ; Yandong HU ; Xu LI ; Chuang ZHI

Chinese Journal of Medical Genetics 2023;40(1):71-75

6.Pathogenic genes and corresponding ciliary defects associated with primary ciliary dyskinesia.

Lina WANG ; Baoping XU ; Liwei GAO

Chinese Journal of Medical Genetics 2022;39(4):433-437

7.Clinical phenotypes of primary ciliary dyskinesia.

Cheng LEI ; Rongchun WANG ; Danhui YANG ; Ting GUO ; Hong LUO

Journal of Central South University(Medical Sciences) 2022;47(1):116-122

9.Case report of neurofibromatosis type 1 combined with primary ciliary dyskinesia.

Chun BIAN ; Xinyue ZHAO ; Yaping LIU ; Minjiang CHEN ; Shuying ZHENG ; Xinlun TIAN ; Kai-Feng XU

Frontiers of Medicine 2021;15(6):933-937

10.Analysis of a patient with primary ciliary dyskinesia caused by DNAH5 variants.

Yanwei SHA ; Lin LI

Chinese Journal of Medical Genetics 2021;38(5):458-460

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