Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia

10.3389/fnins.2018.00186

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Main Authors: Peh, W.Y.X, Mogan, R, Thow, X.Y, Chua, S.M, Rusly, A, Thakor, N.V, Yen, S.-C
Other Authors: ELECTRICAL AND COMPUTER ENGINEERING
Format: Article
Published: 2020
Subjects:
rat
Online Access:https://scholarbank.nus.edu.sg/handle/10635/176209
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spelling sg-nus-scholar.10635-1762092024-11-13T06:31:40Z Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia Peh, W.Y.X Mogan, R Thow, X.Y Chua, S.M Rusly, A Thakor, N.V Yen, S.-C ELECTRICAL AND COMPUTER ENGINEERING LIFE SCIENCES INSTITUTE animal cell animal experiment area under the curve Article autonomic nerve autonomic pelvic nerve bladder contraction bladder dysfunction bladder emptying bladder sphincter controlled study detrusor dyssynergia electromyography electrostimulation female micturition muscle action potential nerve stimulation nerve transection neuromodulation nonhuman pelvic nerve rat smooth muscle contraction striated muscle urine volume visceral afferent nerve 10.3389/fnins.2018.00186 Frontiers in Neuroscience 12 MAR 186 2020-09-14T08:30:10Z 2020-09-14T08:30:10Z 2018 Article Peh, W.Y.X, Mogan, R, Thow, X.Y, Chua, S.M, Rusly, A, Thakor, N.V, Yen, S.-C (2018). Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia. Frontiers in Neuroscience 12 (MAR) : 186. ScholarBank@NUS Repository. https://doi.org/10.3389/fnins.2018.00186 1662-4548 https://scholarbank.nus.edu.sg/handle/10635/176209 Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic animal cell
animal experiment
area under the curve
Article
autonomic nerve
autonomic pelvic nerve
bladder contraction
bladder dysfunction
bladder emptying
bladder sphincter
controlled study
detrusor dyssynergia
electromyography
electrostimulation
female
micturition
muscle action potential
nerve stimulation
nerve transection
neuromodulation
nonhuman
pelvic nerve
rat
smooth muscle contraction
striated muscle
urine volume
visceral afferent nerve
spellingShingle animal cell
animal experiment
area under the curve
Article
autonomic nerve
autonomic pelvic nerve
bladder contraction
bladder dysfunction
bladder emptying
bladder sphincter
controlled study
detrusor dyssynergia
electromyography
electrostimulation
female
micturition
muscle action potential
nerve stimulation
nerve transection
neuromodulation
nonhuman
pelvic nerve
rat
smooth muscle contraction
striated muscle
urine volume
visceral afferent nerve
Peh, W.Y.X
Mogan, R
Thow, X.Y
Chua, S.M
Rusly, A
Thakor, N.V
Yen, S.-C
Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia
description 10.3389/fnins.2018.00186
author2 ELECTRICAL AND COMPUTER ENGINEERING
author_facet ELECTRICAL AND COMPUTER ENGINEERING
Peh, W.Y.X
Mogan, R
Thow, X.Y
Chua, S.M
Rusly, A
Thakor, N.V
Yen, S.-C
format Article
author Peh, W.Y.X
Mogan, R
Thow, X.Y
Chua, S.M
Rusly, A
Thakor, N.V
Yen, S.-C
author_sort Peh, W.Y.X
title Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia
title_short Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia
title_full Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia
title_fullStr Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia
title_full_unstemmed Novel neurostimulation of autonomic pelvic nerves overcomes Bladder-sphincter dyssynergia
title_sort novel neurostimulation of autonomic pelvic nerves overcomes bladder-sphincter dyssynergia
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/176209
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