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Micromachines|July 2, 2021
Microfluidic Obstacle Arrays Induce Large Reversible Shape Change in Red Blood CellsDavid W Inglis, Robert E Nordon, Jason P Beech, et al.Lab on a Chip|September 2, 2017
Anisotropic permeability in deterministic lateral displacement arraysRohan Vernekar, Timm Krüger, Kevin Loutherback, et al.Lab on a Chip|May 3, 2006
Critical particle size for fractionation by deterministic lateral displacementDavid W Inglis, John A Davis, Robert H Austin, et al.Analytical Chemistry|July 4, 2013
Nanochannel pH gradient electrofocusing of proteinsMichael A Startsev, David W Inglis, Mark S Baker, et al.RSC Advances|May 6, 2022
Microfabricated needle for hydrogen peroxide detectionShilun Feng, Sandhya Clement, Yonggang Zhu, et al.Biomicrofluidics|November 14, 2013
Erratum: "Manufacturing and wetting low-cost microfluidic cell separation devices" [Biomicrofluidics 7, 056501 (2013)]Ryan S Pawell, David W Inglis, Tracie J Barber, et al.Biomicrofluidics|January 10, 2014
Manufacturing and wetting low-cost microfluidic cell separation devicesRyan S Pawell, David W Inglis, Tracie J Barber, et al.Langmuir : the ACS Journal of Surfaces and Colloids|February 15, 2024
Surface Modification of Polystyrene with Boronic Acid for Immunoaffinity-Based Cell EnrichmentElham Shirani, Amir Razmjou, Mohsen Asadnia, et al.Biomicrofluidics|May 23, 2017
Erratum: Publisher's Note: "Maximizing particle concentration in deterministic lateral displacement arrays" [Biomicrofluidics <b>11</b>, 024121 (2017)]Shilun Feng, Alison M Skelley, Ayad G Anwer, et al.ACS Sensors|April 3, 2023
Emerging Microfluidic Devices for Sample Preparation of Undiluted Whole Blood to Enable the Detection of BiomarkersLaura M Rey Gomez, Rena Hirani, Andrew Care, et al.Pageof 6