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Experimental Eye Research|November 1, 1993
Lens development in a dominant X-linked congenital cataract of the mouseP A Grimes, J Favor, B Koeberlein, et al.Journal of Pediatric Surgery|October 1, 1992
The use of indium 111 leukocyte scans in children with inflammatory bowel diseaseP G Fitzgerald, T J Topp, J M Walton, et al.American Journal of Human Genetics|March 31, 2000
Autosomal-dominant congenital cataract associated with a deletion mutation in the human beaded filament protein gene BFSP2P M Jakobs, J F Hess, P G FitzGerald, et al.The Journal of Cell Biology|May 1, 1993
Bovine filensin possesses primary and secondary structure similarity to intermediate filament proteinsF Gounari, A Merdes, R Quinlan, et al.European Journal of Cell Biology|July 1, 1995
Filensin is proteolytically processed during lens fiber cell differentiation by multiple independent pathwaysA Sandilands, A R Prescott, A M Hutcheson, et al.Visual Neuroscience|May 15, 2009
Distribution and structure of efferent synapses in the chicken retinaS H Lindstrom, N Nacsa, T Blankenship, et al.Journal of Pediatric Surgery|June 1, 1997
Histopathologic analysis of interval appendectomy specimens: support for the role of interval appendectomyM V Mazziotti, E F Marley, A L Winthrop, et al.Cytoskeleton (Hoboken, N.J.)|November 7, 2017
Production of recombinant human tektin 1, 2, and 4 and in vitro assembly of human tektin 1M S Budamagunta, F Guo, N Sun, et al.Journal of Cell Science|April 1, 1995
Vimentin and CP49/filensin form distinct networks in the lens which are independently modulated during lens fibre cell differentiationA Sandilands, A R Prescott, J M Carter, et al.Journal of Pediatric Surgery|January 1, 1990
Cervical cystic hygroma in the fetus: clinical spectrum and outcomeJ C Langer, P G Fitzgerald, D Desa, et al.Pageof 5