Sensory Fibers of the Pelvic Nerve Innervating the Rat's Urinary Bladder
- 1 October 2000
- journal article
- research article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 84 (4) , 1924-1933
- https://doi.org/10.1152/jn.2000.84.4.1924
Abstract
Much attention has been given to the pelvic nerve afferent innervation of the urinary bladder; however, reports differ considerably in descriptions of afferent receptor types, their conduction velocities, and their potential roles in bladder reflexes and sensation. The present study was undertaken to do a relatively unbiased sampling of bladder afferent fibers of the pelvic nerve in adult female rats. The search stimulus for units to be studied was electrical stimulation of both the bladder nerves and the pelvic nerve. Single-unit activity of 100 L6dorsal root fibers, activated by both pelvic and bladder nerve stimulation, was analyzed. Sixty-five units had C-fiber and 35 units had Aδ-fiber conduction velocities. Receptive characteristics were established by direct mechanical stimulation, filling of the bladder with 0.9% NaCl at a physiological speed and by filling the bladder with solutions containing capsaicin, potassium, or turpentine oil. The majority (61) of these fibers were unambiguously excited by bladder filling with 0.9% NaCl and were classified as mechanoreceptors. All mechanoreceptors with receptive fields on the body of the bladder had low pressure thresholds (≤10 mmHg). Receptive fields of units with higher thresholds were near the ureterovesical junction, on the base of the bladder or could not be found. Neither thresholds nor suprathreshold responses could be related to conduction velocity. Bladder compliance and mechanoreceptor thresholds were influenced by the stage of the estrous cycle: both were lowest in proestrous rats and highest in metaestrous rats. Mechanoreceptors innervating the body of the bladder and the region near the ureterovesical junction showed two patterns of responsiveness to slow bladder filling. One group of units exhibited increasing activity with increasing pressure up to 40 mmHg, while the other group showed a peak in activity at pressures below 40 mmHg followed by a plateau or decrease in activity with increasing pressure. It is proposed that differences in stimulus transduction relate to the different response patterns. Thirty-nine units failed to respond to bladder filling. Eight of these were excited by intravesical potassium or capsaicin and were classified as chemoreceptors. The remaining 31 units were not excited by any stimulus tested. Chemoreceptors and unexcited units had both Aδ and C afferent fibers. We conclude that the pelvic nerve sensory innervation of the rat bladder is complex, may be sensitive to hormonal status, and that the properties of individual sensory receptors are not related in an obvious manner to the conduction velocity of their fibers.Keywords
This publication has 48 references indexed in Scilit:
- Sex, time-of-day and estrous variations in behavioral and bladder histological consequences of cyclophosphamide-induced cystitis in ratsPAIN®, 1997
- Desensitization of Bladder Sensory Fibers by Intravesical Capsaicin has Long Lasting Clinical and Urodynamic Effects in Patients With Hyperactive or Hypersensitive Bladder DysfunctionJournal of Urology, 1997
- Estrous cycle phase variations in visceromotor and cardiovascular responses to colonic distension in the anesthetized ratBrain Research, 1996
- Sensitisation of visceral afferents by nerve growth factor in the adult ratPain, 1996
- Clinical and Urodynamic Effects of Intravesical Capsaicin Treatment in Patients with Chronic Traumatic Spinal Detrusor HyperreflexiaJournal of Urology, 1995
- The behavioral response induced by intravesical instillation of capsaicin in rats is mediated by pudendal urethral sensory fibersLife Sciences, 1994
- New concepts in relation to urge and detrusor activityNeurourology and Urodynamics, 1993
- Conduction velocity distribution of afferent fibers innervating the rat urinary bladderBrain Research, 1990
- Distribution of sacral afferent axons in cat urinary bladderJournal of Anatomy, 1973
- Receptor characteristics and conduction velocities in bladder afferentsJournal of Psychiatric Research, 1971