Showing results (1-10 of 14) with videos related to
Sort By:
Pageof 2
Neuroscience Letters|December 19, 2024
Latent bladder hypersensitivity induced by neonatal cystitis in rats unmasked by segmental but not hetero-segmental inflammationTimothy J Ness, Cary DeWitteBrain Research|April 27, 2022
Neonatal cystitis leads to alterations in spinal corticotropin releasing factor receptor-type 2 content and function in adult rats following bladder re-inflammationTimothy J Ness, Cary DeWitte, Alan RandichThe Journal of Pain|September 11, 2022
The Double Insult of Neonatal Cystitis Plus Adult Somatic Inflammation Results in Corticotropin Releasing Factor Type II Receptor-Dependent Bladder Hypersensitivity in Female RatsTimothy J Ness, Cary DeWitte, Alan RandichNeuropharmacology|December 9, 2022
Stress-induced bladder hypersensitivity: Effect of corticotropin releasing factor receptors assessed by spinal neurophysiology and neurochemistryMeredith T Robbins, Cary DeWitte, Timothy J NessNeuroscience Letters|December 20, 2021
Spinal neurochemical mechanisms of acute stress-induced visceral hypersensitivity in healthy ratsTimothy J Ness, Cary DeWitte, Jennifer J DeBerryBrain Research|July 3, 2018
Neonatal bladder inflammation alters the role of the central amygdala in hypersensitivity produced by Acute Footshock stress in adult female ratsTimothy J Ness, Cary DeWitte, Jennifer J DeBerry, et al.Neuroscience Letters|August 7, 2015
Serotonin enhances urinary bladder nociceptive processing via a 5-HT3 receptor mechanismJason D Hall, Cary DeWitte, Timothy J Ness, et al.Research and Reports in Urology|December 18, 2023
Neonatal Cystitis Makes Adult Female Rat Urinary Bladders More Sensitive to Low Concentration Microbial AntigensAshley C Archer, Jennifer J DeBerry, Cary DeWitte, et al.Neuroscience Letters|April 7, 2022
Neonatal cystitis alters mechanisms of stress-induced visceral hypersensitivity in ratsTimothy J Ness, Cary DeWitte, Meredith T Robbins, et al.BMC Urology|October 5, 2021
Systemic and intrathecal baclofen produce bladder antinociception in ratsTimothy J Ness, Alan Randich, Xin Su, et al.Pageof 2