Edward F. Leonard
Affiliations: | Chemical Engineering | Columbia University, New York, NY |
Area:
Chemical EngineeringWebsite:
http://www.columbia.edu/~leonard/Google:
"Edward F. Leonard"Bio:
https://engineering.columbia.edu/files/engineering/leonard.pdf
https://books.google.com/books?id=rMSkV7sijMUC
https://books.google.com/books?id=J4ZKAQAAIAAJ
Parents
Sign in to add mentorPeter Frank Hagerty | grad student | 1960 | Penn | |
(Liquid Mixing on Bubble-cap Trays) | ||||
Robert Wayne Houston | grad student | 1960 | Penn |
Children
Sign in to add traineeNopphon Weeranoppanant | research assistant | 2010-2011 | Columbia |
Sobin Kim | grad student | 2001 | Columbia |
Christian P. Aucoin | grad student | 2009 | Columbia |
Edgar E. Nanne | grad student | 2010 | Columbia |
Jonathan Cacciatore | grad student | 2012 | Columbia |
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Publications
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Amar LI, Hill MI, Faria M, et al. (2019) Co-current crossflow microfiltration in a microchannel. Biomedical Microdevices. 21: 12 |
Amar LI, Guisado D, Faria M, et al. (2018) Erythrocyte fouling on micro-engineered membranes. Biomedical Microdevices. 20: 55 |
Weeranoppanant N, Amar LI, Tong E, et al. (2018) Modeling of fouling in cross-flow microfiltration of suspensions Aiche Journal. 65: 207-213 |
Faria M, Liu Y, Leonard EF. (2017) Particle spallation in a microfluidic blood processing device: the problem of using peristaltic pumps and silicon-based microfilters. The International Journal of Artificial Organs. 0 |
Cacciatore JJ, Leonard EF, Chasin LA. (2012) The isolation of CHO cells with a site conferring a high and reproducible transgene amplification rate. Journal of Biotechnology. 164: 346-53 |
Dickson MN, Amar L, Hill M, et al. (2012) A scalable, micropore, platelet rich plasma separation device. Biomedical Microdevices. 14: 1095-102 |
Nora Dickson M, Tsinberg P, Tang Z, et al. (2011) Efficient capture of circulating tumor cells with a novel immunocytochemical microfluidic device. Biomicrofluidics. 5: 34119-3411915 |
Cacciatore JJ, Chasin LA, Leonard EF. (2010) Gene amplification and vector engineering to achieve rapid and high-level therapeutic protein production using the Dhfr-based CHO cell selection system. Biotechnology Advances. 28: 673-81 |
Nanne EE, Aucoin CP, Leonard EF. (2010) Shear rate and hematocrit effects on the apparent diffusivity of urea in suspensions of bovine erythrocytes. Asaio Journal (American Society For Artificial Internal Organs : 1992). 56: 151-6 |
Nanne EE, Aucoin CP, Leonard EF. (2010) Molecular movement of bovine albumin in flowing suspensions of bovineerythrocytes Chemical Engineering Science. 65: 6389-6396 |