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Optical genome mapping identifies rare structural variations as predisposition factors associated with severe COVID-19.
Sahajpal NS, Jill Lai CY, Hastie A, Mondal AK, Dehkordi SR, van der Made CI, Fedrigo O, Al-Ajli F, Jalnapurkar S, Byrska-Bishop M, Kanagal-Shamanna R, Levy B, Schieck M, Illig T, Bacanu SA, Chou JS, Randolph AG, Rojiani AM, Zody MC, Brownstein CA, Beggs AH, Bafna V, Jarvis ED, Hoischen A, Chaubey A, Kolhe R; COVID19hostgenomesv Consortium. Sahajpal NS, et al. Among authors: hastie a. iScience. 2022 Feb 18;25(2):103760. doi: 10.1016/j.isci.2022.103760. Epub 2022 Jan 10. iScience. 2022. PMID: 35036860 Free PMC article.
Optical Genome Mapping and Single Nucleotide Polymorphism Microarray: An Integrated Approach for Investigating Products of Conception.
Sahajpal NS, Mondal AK, Ananth S, Pundkar C, Jones K, Williams C, Fee T, Weissman A, Tripodi G, Oza E, Gavrilova-Jordan L, Omar N, Hastie AR, DuPont BR, Layman L, Chaubey A, Kolhe R. Sahajpal NS, et al. Among authors: hastie ar. Genes (Basel). 2022 Apr 3;13(4):643. doi: 10.3390/genes13040643. Genes (Basel). 2022. PMID: 35456449 Free PMC article.
Genetic Predisposition to Neurological Complications in Patients with COVID-19.
Sahajpal NS, Hastie AR, Schieck M, Mondal AK, Felde M, van der Made CI, Chou JS, Randolph AG, Illig T, Zody MC, Brownstein CA, Beggs AH, Hoischen A, Chaubey A, Kolhe R; COVID19hostgenomesv Consortium. Sahajpal NS, et al. Among authors: hastie ar. Biomolecules. 2023 Jan 9;13(1):133. doi: 10.3390/biom13010133. Biomolecules. 2023. PMID: 36671517 Free PMC article.
Correction: Optical Genome Mapping for Oncology Applications.
Sahajpal NS, Mondal AK, Hastie A, Chaubey A, Kolhe R. Sahajpal NS, et al. Among authors: hastie a. Curr Protoc. 2023 Nov;3(11):e946. doi: 10.1002/cpz1.946. Curr Protoc. 2023. PMID: 37962549 No abstract available.
Human genome meeting 2016 : Houston, TX, USA. 28 February - 2 March 2016.
Srivastava AK, Wang Y, Huang R, Skinner C, Thompson T, Pollard L, Wood T, Luo F, Stevenson R, Polimanti R, Gelernter J, Lin X, Lim IY, Wu Y, Teh AL, Chen L, Aris IM, Soh SE, Tint MT, MacIsaac JL, Yap F, Kwek K, Saw SM, Kobor MS, Meaney MJ, Godfrey KM, Chong YS, Holbrook JD, Lee YS, Gluckman PD, Karnani N; GUSTO study group; Kapoor A, Lee D, Chakravarti A, Maercker C, Graf F, Boutros M, Stamoulis G, Santoni F, Makrythanasis P, Letourneau A, Guipponi M, Panousis N, Garieri M, Ribaux P, Falconnet E, Borel C, Antonarakis SE, Kumar S, Curran J, Blangero J, Chatterjee S, Kapoor A, Akiyama J, Auer D, Berrios C, Pennacchio L, Chakravarti A, Donti TR, Cappuccio G, Miller M, Atwal P, Kennedy A, Cardon A, Bacino C, Emrick L, Hertecant J, Baumer F, Porter B, Bainbridge M, Bonnen P, Graham B, Sutton R, Sun Q, Elsea S, Hu Z, Wang P, Zhu Y, Zhao J, Xiong M, Bennett DA, Hidalgo-Miranda A, Romero-Cordoba S, Rodriguez-Cuevas S, Rebollar-Vega R, Tagliabue E, Iorio M, D’Ippolito E, Baroni S, Kaczkowski B, Tanaka Y, Kawaji H, Sandelin A, Andersson R, Itoh M, Lassmann T; The FANTOM5 Consortium; Hayashizaki Y, Carninci P, Forrest ARR, Semple CA, Rosenthal EA, Shirts B, Amendola L, Gallego C, Horike-Pyne… See abstract for full author list ➔ Srivastava AK, et al. Among authors: hastie a. Hum Genomics. 2016 May 26;10 Suppl 1(Suppl 1):12. doi: 10.1186/s40246-016-0063-5. Hum Genomics. 2016. PMID: 27294413 Free PMC article.
Lopez-Terrada O26 Nanochannel based next-generation mapping for interrogation of clinically relevant structural variation A. Hastie, Z. Dzakula, A. W. Pang, E. T. Lam, T. Anantharaman, M. ...Bouazzaoui, E. Huber, A. Dan, F. A. Al-Allaf, W. Herr, …
Lopez-Terrada O26 Nanochannel based next-generation mapping for interrogation of clinically relevant structural variation A. Hasti
230 results