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M Joseph Costello

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

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Ultrastructural Pathology|November 9, 2006
Cryo-electron microscopy of biological samplesM Joseph Costello
Experimental Eye Research|March 20, 2016
The cause and consequence of fiber cell compaction in the vertebrate lensSteven Bassnett, M Joseph Costello
Molecular Vision|December 10, 2013
Simple fixation and storage protocol for preserving the internal structure of intact human donor lenses and extracted human nuclear cataract specimensAshik Mohamed, Kurt O Gilliland, Sangeetha Metlapally, et al.
Experimental Eye Research|November 5, 2013
Ultrastructural analysis of the human lens fiber cell remodeling zone and the initiation of cellular compactionM Joseph Costello, Ashik Mohamed, Kurt O Gilliland, et al.
BMC Ophthalmology|January 8, 2003
Analysis of nuclear fiber cell compaction in transparent and cataractous diabetic human lenses by scanning electron microscopyChristopher D Freel, Kristin J al-Ghoul, Jer R Kuszak, et al.
Experimental Eye Research|October 5, 2010
Multilamellar spherical particles as potential sources of excessive light scattering in human age-related nuclear cataractsM Joseph Costello, Sönke Johnsen, Sangeetha Metlapally, et al.
Experimental Eye Research|September 24, 2004
Distribution, spherical structure and predicted Mie scattering of multilamellar bodies in human age-related nuclear cataractsKurt O Gilliland, Christopher D Freel, Sonke Johnsen, et al.
Investigative Ophthalmology & Visual Science|January 2, 2007
Predicted light scattering from particles observed in human age-related nuclear cataracts using mie scattering theoryM Joseph Costello, Sönke Johnsen, Kurt O Gilliland, et al.
Experimental Eye Research|July 20, 2002
Fourier analysis of cytoplasmic texture in nuclear fiber cells from transparent and cataractous human and animal lensesChristopher D Freel, Kurt O Gilliland, C Wesley Lane, et al.
Experimental Eye Research|March 14, 2003
Ultrastructural characterization and Fourier analysis of fiber cell cytoplasm in the hyperbaric oxygen treated guinea pig lens opacification modelChristopher D Freel, Kurt O Gilliland, Harold E Mekeel, et al.
Pageof 3

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

Sort By:
Pageof 3
Ultrastructural Pathology|November 9, 2006
Cryo-electron microscopy of biological samplesM Joseph Costello
Experimental Eye Research|March 20, 2016
The cause and consequence of fiber cell compaction in the vertebrate lensSteven Bassnett, M Joseph Costello
Molecular Vision|December 10, 2013
Simple fixation and storage protocol for preserving the internal structure of intact human donor lenses and extracted human nuclear cataract specimensAshik Mohamed, Kurt O Gilliland, Sangeetha Metlapally, et al.
Experimental Eye Research|November 5, 2013
Ultrastructural analysis of the human lens fiber cell remodeling zone and the initiation of cellular compactionM Joseph Costello, Ashik Mohamed, Kurt O Gilliland, et al.
BMC Ophthalmology|January 8, 2003
Analysis of nuclear fiber cell compaction in transparent and cataractous diabetic human lenses by scanning electron microscopyChristopher D Freel, Kristin J al-Ghoul, Jer R Kuszak, et al.
Experimental Eye Research|October 5, 2010
Multilamellar spherical particles as potential sources of excessive light scattering in human age-related nuclear cataractsM Joseph Costello, Sönke Johnsen, Sangeetha Metlapally, et al.
Experimental Eye Research|September 24, 2004
Distribution, spherical structure and predicted Mie scattering of multilamellar bodies in human age-related nuclear cataractsKurt O Gilliland, Christopher D Freel, Sonke Johnsen, et al.
Investigative Ophthalmology & Visual Science|January 2, 2007
Predicted light scattering from particles observed in human age-related nuclear cataracts using mie scattering theoryM Joseph Costello, Sönke Johnsen, Kurt O Gilliland, et al.
Experimental Eye Research|July 20, 2002
Fourier analysis of cytoplasmic texture in nuclear fiber cells from transparent and cataractous human and animal lensesChristopher D Freel, Kurt O Gilliland, C Wesley Lane, et al.
Experimental Eye Research|March 14, 2003
Ultrastructural characterization and Fourier analysis of fiber cell cytoplasm in the hyperbaric oxygen treated guinea pig lens opacification modelChristopher D Freel, Kurt O Gilliland, Harold E Mekeel, et al.
Pageof 3