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Kidney International|February 1, 1996
Longitudinal evaluation of peritoneal macrophage function and activation during CAPD: maturity, cytokine synthesis and arachidonic acid metabolismS J McGregor, N Topley, A Jörres, et al.Annals of Internal Medicine|March 6, 1999
Gastrointestinal symptoms in 3181 volunteers ingesting snack foods containing olestra or triglycerides. A 6-week randomized, placebo-controlled trialR S Sandler, N L Zorich, T G Filloon, et al.Techniques in Coloproctology|December 13, 2023
Preventative strategies for low anterior resection syndromeH Brock, L Lambrineas, H I Ong, et al.Experimental Neurology|September 24, 2025
Dosing parameters for grafting human neural stem cells into sites of spinal cord injuryJ H Brock, C A Shevinsky, L Graham, et al.Experimental Neurology|April 15, 2024
An improved method for generating human spinal cord neural stem cellsY Li, H Kumamaru, T J Vokes, et al.Neurotherapeutics : the Journal of the American Society for Experimental Neurotherapeutics|March 20, 2012
Animal models of neurologic disorders: a nonhuman primate model of spinal cord injuryYvette S Nout, Ephron S Rosenzweig, John H Brock, et al.Nature Neuroscience|November 16, 2010
Extensive spontaneous plasticity of corticospinal projections after primate spinal cord injuryEphron S Rosenzweig, Gregoire Courtine, Devin L Jindrich, et al.Neurorehabilitation and Neural Repair|February 15, 2012
Methods for functional assessment after C7 spinal cord hemisection in the rhesus monkeyYvette S Nout, Adam R Ferguson, Sarah C Strand, et al.Neuron|August 2, 2022
Rhesus macaque versus rat divergence in the corticospinal projectomeEleni Sinopoulou, Ephron S Rosenzweig, James M Conner, et al.Nature Medicine|February 27, 2018
Restorative effects of human neural stem cell grafts on the primate spinal cordEphron S Rosenzweig, John H Brock, Paul Lu, et al.Pageof 17