Zilan Mi
4 Papers
3 Citations
Zilan Mi is an academic researcher. The author has contributed to research in topics: Massive parallel sequencing & Genome project. The author has an hindex of 2, co-authored 4 publications.
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Papers
Advanced Whole Genome Sequencing Using an Entirely PCR-free Massively Parallel Sequencing Workflow
Hanjie Shen,Pengjuan Liu,Zhanqing Li,Fang Chen,Hui Jiang,Shiming Shi,Yang Xi,Qiaoling Li,Xiaojue Wang,Jing Zhao,Xinming Liang,Yinlong Xie,Lin Wang,Wenlan Tian,Tam Berntsen,Andrei Alexeev,Luo Yinling,Meihua Gong,Jiguang Li,Chongjun Xu,Nina Barua,Snezana Drmanac,Sijie Dai,Zilan Mi,Han Ren,Zhe Lin,Ao Chen,Wenwei Zhang,Feng Mu,Xun Xu,Xia Zhao,Yuan Jiang,Radoje Drmanac +32 more
TL;DR: In this paper, the authors proposed the first true PCR-free whole-genome sequencing (WGS) arrays, which were sequenced on the MGI Tech Co., Ltd. (referred to as MGI) platform.
Advanced Whole Genome Sequencing Using a Complete PCR-free Massively Parallel Sequencing (MPS) Workflow
Hanjie Shen,Pengjuan Liu,Zhanqing Li,Fang Chen,Hui Jiang,Shiming Shi,Yang Xi,Qiaoling Li,Xiaojue Wang,Jing Zhao,Xinming Liang,Yinlong Xie,Lin Wang,Wenlan Tian,Tam Berntsen,Luo Yinling,Meihua Gong,Jiguang Li,Chongjun Xu,Sijie Dai,Zilan Mi,Han Ren,Zhe Lin,Ao Chen,Wenwei Zhang,Feng Mu,Xun Xu,Xia Zhao,Yuan Jiang,Radoje Drmanac +29 more
TL;DR: True PCR-free DNBSEQ™ WGS provides a powerful solution for improving WGS accuracy while reducing cost and analysis time, thus facilitating future precision medicine, cohort studies, and large population genome projects.
Development of Coupling Controlled Polymerizations by Adapter-ligation in Mate-pair Sequencing for Detection of Various Genomic Variants in One Single Assay
Zirui Dong,Xia Zhao,Qiaoling Li,Zhenjun Yang,Yang Xi,Andrei Alexeev,Hanjie Shen,Ou Wang,Jie Ruan,Han Ren,Hanmin Wei,Xiaojuan Qi,Jiguang Li,Xiaofan Zhu,Yanyan Zhang,Peng Dai,Xiangdong Kong,Killeen Kirkconnell,Oleg Alferov,Shane Giles,Jennifer Yamtich,Bahram Ghaffarzadeh Kermani,Chao Dong,Pengjuan Liu,Zilan Mi,Wenwei Zhang,Xun Xu,Radoje Drmanac,Kwong Wai Choy,Yuan Jiang +29 more
TL;DR: A gel-free and biotin-capture-free mate-pair method through coupling Controlled Polymerizations by Adapter-Ligation (CP-AL), which provides a potential single-integrated solution for detecting various genomic variants, facilitating a genetic diagnosis in human diseases.
Development of coupling controlled polymerizations by adapter-ligation in mate-pair sequencing for detection of various genomic variants in one single assay.
Zirui Dong,Xia Zhao,Qiaoling Li,Zhenjun Yang,Yang Xi,Andrei Alexeev,Hanjie Shen,Ou Wang,Jie Ruan,Han Ren,Hanmin Wei,Xiaojuan Qi,Jiguang Li,Xiaofan Zhu,Yanyan Zhang,Peng Dai,Xiangdong Kong,Killeen Kirkconnell,Oleg Alferov,Shane Giles,Jennifer Yamtich,Bahram Ghaffarzadeh Kermani,Chao Dong,Pengjuan Liu,Zilan Mi,Wenwei Zhang,Xun Xu,Radoje Drmanac,Kwong Wai Choy,Yuan Jiang +29 more
TL;DR: A gel-free and biotin-capture-free mate-pair method through coupling Controlled Polymerizations by Adapter-Ligation (CP-AL), which provides a potential single-integrated solution for detecting various genomic variants, facilitating a genetic diagnosis in human diseases.