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D J Beebe

Showing results (1-10 of 22) with videos related to

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Lab on a Chip|March 3, 2006
Gelatin based microfluidic devices for cell cultureA Paguirigan, D J Beebe
IEEE Transactions on Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society|September 28, 1998
A microfabricated electrostatic haptic display for persons with visual impairmentsH Tang, D J Beebe
Lab on a Chip|July 11, 2014
Gradient generation platforms: new directions for an established microfluidic technologyE Berthier, D J Beebe
Science (New York, N.Y.)|February 13, 2001
Surface-directed liquid flow inside microchannelsB Zhao, J S Moore, D J Beebe
Cell Proliferation|January 18, 2007
Simulating mouse mammary gland development: cell ageing and its relation to stem and progenitor activityA Paguirigan, D J Beebe, C M Alexander
Lab on a Chip|December 24, 2004
Early mammalian embryo development depends on cumulus removal techniqueH C Zeringue, J J Rutledge, D J Beebe
Lab on a Chip|December 24, 2004
A microfluidic method for removal of the zona pellucida from mammalian embryosH C Zeringue, M B Wheeler, D J Beebe
Theriogenology|May 26, 2007
Toward culture of single gametes: the development of microfluidic platforms for assisted reproductionM B Wheeler, E M Walters, D J Beebe
IEEE Transactions on Bio-Medical Engineering|November 14, 1997
Electrothermal branding for embryo labelingL Wang, D J Beebe, A R Williams, et al.
Bio-Medical Materials and Engineering|January 26, 2011
Young's modulus of collagen at slow displacement ratesM D C Lopez-Garcia, D J Beebe, W C Crone
Pageof 3

Showing results (1-10 of 22) with videos related to

Sort By:
Pageof 3
Lab on a Chip|March 3, 2006
Gelatin based microfluidic devices for cell cultureA Paguirigan, D J Beebe
IEEE Transactions on Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society|September 28, 1998
A microfabricated electrostatic haptic display for persons with visual impairmentsH Tang, D J Beebe
Lab on a Chip|July 11, 2014
Gradient generation platforms: new directions for an established microfluidic technologyE Berthier, D J Beebe
Science (New York, N.Y.)|February 13, 2001
Surface-directed liquid flow inside microchannelsB Zhao, J S Moore, D J Beebe
Cell Proliferation|January 18, 2007
Simulating mouse mammary gland development: cell ageing and its relation to stem and progenitor activityA Paguirigan, D J Beebe, C M Alexander
Lab on a Chip|December 24, 2004
Early mammalian embryo development depends on cumulus removal techniqueH C Zeringue, J J Rutledge, D J Beebe
Lab on a Chip|December 24, 2004
A microfluidic method for removal of the zona pellucida from mammalian embryosH C Zeringue, M B Wheeler, D J Beebe
Theriogenology|May 26, 2007
Toward culture of single gametes: the development of microfluidic platforms for assisted reproductionM B Wheeler, E M Walters, D J Beebe
IEEE Transactions on Bio-Medical Engineering|November 14, 1997
Electrothermal branding for embryo labelingL Wang, D J Beebe, A R Williams, et al.
Bio-Medical Materials and Engineering|January 26, 2011
Young's modulus of collagen at slow displacement ratesM D C Lopez-Garcia, D J Beebe, W C Crone
Pageof 3