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Biomedical subjects

J S Walter

Publications and source records attributed to J S Walter.

9 recordsLinked to original sources

Bladder inhibition by penile nerve stimulation in spinal cord injury patients.

Detrusor hyperreflexia causing voiding dysfunction in spinal cord injury patients is a difficult problem and is not always treated effectively by anticholinergic agents. We have been investigating electrical stimulation methods to inhibit hyperreflexia and dorsal penile nerve stimulation is the most promising. Six chronic suprasacral spinal cord injury men (average age 36 years) underwent stimulation testing with water cystometry before, during and after stimulation. Dorsal penile stimulation was done with carbon rubber butterfly electrodes (Medtronic) with parameters of 5 pulses per second, 0.35 msec. pulse duration, and current at a level above the threshold for pelvic twitching activity and adjusted for optimal bladder effect (range 25 to 70 mamp.). In all 6 patients the cystometrogram during stimulation showed an increase in bladder volume over the prestimulation cystometrogram (range 27 to 150%). In 2 patients there was no detrusor activity after filling to 500 cc. Stimulation was then stopped and a spontaneous contraction occurred. The cystometrogram conducted after the stimulus also had less volume than that performed during stimulation but it was larger than the prestimulation volume. Penile nerve stimulation was painless with no side effects. Penile nerve electrical stimulation is effective for inhibiting bladder hyperreflexia and should be easily adaptable for chronic home use as an alternative to current therapy.

Adult

Comparison of direct bladder and sacral nerve stimulation in spinal cats.

Neuroprosthetic techniques have been used to facilitate voiding via electrical stimulation for bladder management following spinal cord injury (SCI), but high urethral resistance has been a problem. This problem was investigated here in the chronic, spinal, male cat (C6-T1) using direct bladder and sacral nerve stimulation. Direct bladder stimulation was only conducted during terminal procedures with an open abdomen and with four hook electrodes inserted into the bladder wall. Sacral stimulation was conducted daily during the 10 weeks post-SCI and during terminal procedures. Stimulation was conducted with both implanted epidural electrode and surface electrodes over the sacral bone. Both of these sacral methods stimulated anterior and posterior roots. However, these sacral methods were generally ineffective for inducing voiding during the study. In three of the five animals investigated, stimulation did not empty the bladder. In the remaining two animals, the bladder was emptied with sacral stimulation, but only after return of bladder reflex activity, 2 to 4 weeks post-injury. When poor voiding occurred in spite of high bladder pressures, it indicates high urethral resistance. This was confirmed using video cystourethrography where the membranous urethra was observed to remain closed following stimulation. Direct bladder stimulation was then compared to sacral nerve stimulation during terminal procedures. Direct bladder stimulation induced voiding at a high rate both during and after stimulation, whereas sacral nerve stimulation with implanted electrodes induced voiding at a lower rate and only after stimulation. A simple urethral resistance measure, the ratio of bladder pressure to voiding rate, was lower with direct bladder stimulation than sacral nerve stimulation. Stimulation-facilitated voiding has also been associated with the development of bladder wall hypertrophy. This problem was investigated by evaluating bladder wall thickness postmortem in three groups of animals: the first group was the spinal-stimulated animals detailed above; the additional two groups were a spinal-nonstimulated but instrumented group maintained for 10 weeks following injury, and an intact group of animals. The stimulated spinal cats tended to have the thickest bladder wall followed by the nonstimulated spinal cats. The wall thickness of intact animals served as a control.

Animals

Female urinary retention.

The urodynamic results in 68 females with urinary retention were reviewed. There were two groups: 39 patients with neurologic causes for retention, and 29 patients in whom possible causes for retention included: psychological history (15 patients), gynecologic pathology, and urinary tract infection. Nine patients in the neurogenic group and 13 patients in the non-neurogenic group had undergone urethral dilatation with no improvement. Upper urinary tract evaluation was unremarkable. Detrusor failure was the prominent bladder pattern in both groups. In the neurogenic group, low pressure detrusor activity was also present in 10 patients, 3 of whom had sphincter dyssynergia. Flow rate, surface electromyography, and bethanechol supersensitivity test could not help differentiate neurogenic from non-neurogenic detrusor failure. The notation of abnormal bladder sensation did significantly differ between the groups, but was of limited accuracy as an indicator of neurogenic retention. Self-intermittent catheterization was the most effective treatment for both groups, with some patients voiding adequately in follow-up. Although no one test can accurately differentiate neurogenic from nonneurogenic female urinary retention, careful neurourologic evaluation will help guide us to more appropriate management.

Bethanechol

Microinjection of interleukin-1 into brain: separation of sleep and fever responses.

Interleukin-1 (IL1) and muramyl peptides are somnogenic, pyrogenic, immune response modifiers, Their central nervous system loci of action with respect to sleep and body temperature in rabbits were examined in this study using microinjection techniques. Unilateral microinjection of IL1 into various basal forebrain or brain stem sites resulted in elevated colonic temperatures (Tc), but the duration of slow-wave sleep (SWS) was unchanged compared to results obtained after control injections. Injection of IL1 into posterior hypothalamic areas failed to elicit either sleep or temperature responses. In contrast to these results, injection of either IL1 or muramyl dipeptide into the Aqueduct of Sylvius was followed by enhanced SWS and Tc. These results show that IL1-induced sleep and fever responses can be separated. Somnogenic sites of action for IL1 and muramyl peptides remain unknown.

Animals

Surface stimulation techniques for bladder management in the spinal dog.

Electrical stimulation of the bladder wall or sacral nerves may be effective for bladder management in the spinal cord injured patient. However, extensive surgery has been required for electrode implantation. We compared urodynamic responses using surface and minimally invasive epidural stimulating techniques in the chronic spinal male dog. Various surface stimulating techniques were effective: 1) sacral monopolar electrical stimulation with negative electrodes over S2 sacral foramina and positive electrodes on the legs, 2) sacral bipolar electrical stimulation with electrodes only over sacral foramina, 3) perineal monopolar electrical stimulation, and 4) perineal tactile stimulation. Urodynamic responses were similar to those for sacral epidural electrodes implanted adjacent to sacral nerves. Voiding was obtained both during stimulation and poststimulation. Stimulating parameters that were effective for daily voiding with sacral surface electrodes were 10 pps, 30 to 45 ma, 0.6 ms pulse duration, and 2 to 5 sec stimulation train duration.

Animals

Urethral responses to sacral stimulation in chronic spinal dog.

Urethral activity was investigated in the awake chronic spinal-injured canine using urodynamic recordings, video cystofluoroscopy, and urethral pressure recordings without anesthesia. Bladder contractions and voiding were induced by electrical stimulation with epidural electrodes inserted into the sacral canal. Urethral pressure remained elevated during stimulation and for 1-3 s afterward. Poststimulation voiding occurred with three different patterns: 1) pulsatile voiding in which squirting of urine was associated with contractions in the membranous urethra; 2) "on and off" voiding in which pulsatile flow was interrupted for brief periods of time; and 3) steady-stream voiding in which nonpulsatile flow was followed by pulsatile flow. Viewing these voiding patterns with fluoroscopy indicated that the proximal membranous urethra was important in all of the patterns. We conclude that in the chronic spinal-injured canine the skeletal muscle within the membranous urethra (rhabdosphincter) is involved in responses to sacral stimulation and various voiding patterns.

Animals

Sacral epidural electrodes for voiding in the chronic spinal dog.

Recent reports have shown that electrical stimulation of the bladder wall or sacral nerves is effective for bladder management in the spinal cord injured (SCI) patient. However, less invasive methods are needed for electrode implantation. A modified percutaneous procedure for implanting needle electrodes in the sacral canal was evaluated. Stimulation with these electrodes were effective for inducing voiding with little residual volume after the recovery of bladder reflexes, 3 weeks after experimental spinal cord injury in the dog. An optimum electrode arrangement involved a single midline monopolar electrode located between sacral foramina L7 and S1. However, at low stimulating current, lateral electrodes adjacent to sacral nerves were more effective than midline electrodes for inducing voiding. Stimulation parameters that were effective for daily voiding were 10 pps, 1.5-5 mA, 0.3 ms pulse duration, and 2- to 3-second stimulation periods.

Animals

Idiopathic anejaculation treated by vibratory stimulation.

Idiopathic anejaculation is a rare cause of infertility usually treated by psychotherapy. However, electrovibration may be a simple, noninvasive adjunct to the treatment of this disorder. In our two cases, we obtained ejaculate adequate for insemination in one patient and noted some gain in orgasmic sensation in the other. The success in these two infertile patients who had already undergone lengthy psychotherapy is promising. Nevertheless, psychotherapy will continue to be the standard of therapy until we have more experience with penile electrovibration.

Adult

Behavioral therapy for urinary incontinence.

Urinary incontinence is a serious and costly problem that affects many patients, especially the elderly. Because this population is growing, many methods of treatment for urinary incontinence have been developed. However, even though the behavioral techniques have been available for years, only recently has the use of formal behavioral methods become more popular as a less invasive alternative for the treatment of incontinence. These methods have proven effective in several series. This article reviews the treatment of types of urinary incontinence with behavioral therapeutic techniques.

Behavior Therapy