textabstractIn this study, the voiding phase of the micturition cycle in the anesthetized rat and guinea pig is analyzed. In both animals, voiding is characterized by an increase in intravesical pressure and then a decrease, which is accompanied by flow through the urethra and emission of urine. An ultrasonic flow probe was used in both species to measure the flow rate in relation to the intravesical pressure. In the (male) rat, so-called high-frequency oscillations are superimposed on the decreasing bladder pressure. These oscillations do not occur in the guinea pig. It is concluded that the high-frequency oscillations are caused by intermittent flow and not by variations in the bladder contraction. The intermittent flow most likely is cau...
Female Wistar rats were instrumented to record bladder pressure and to stimulate the left pelvic ner...
Micromotions are phasic contractions of the bladder wall. During urine storage, such phasic activity...
Micromotions are phasic contractions of the bladder wall. During urine storage, such phasic activity...
PurposeThe aim of this study was to apply a new surgical procedure that allows for the successful mo...
Purpose: Detrusor nonvoiding contractions occur in up to 70% of healthy individuals. These contracti...
textabstractPurpose: The resistance offered to urinary flow by the urethra is one of the facto...
Objectves To obtain information on the mechanisms of female rat micturition using a model in which p...
textabstractIn this study, the mechanism involved in the initiation of voiding was investi...
To study the relative importance of neurogenic factors in detrusor contractility and to relate a tot...
The course of micturition depends on bladder contractility and urethral resistance. The former is de...
The course of micturition depends on bladder contractility and urethral resistance. The former is de...
Purpose: Autonomous bladder activity can take the form of localized micromotions (MMs), suggesting t...
© 2015. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativec...
To determine the contribution of neural elements to micturition, we evaluated, in intact rats, the c...
Micromotions are phasic contractions of the bladder wall. During urine storage, such phasic activity...
Female Wistar rats were instrumented to record bladder pressure and to stimulate the left pelvic ner...
Micromotions are phasic contractions of the bladder wall. During urine storage, such phasic activity...
Micromotions are phasic contractions of the bladder wall. During urine storage, such phasic activity...
PurposeThe aim of this study was to apply a new surgical procedure that allows for the successful mo...
Purpose: Detrusor nonvoiding contractions occur in up to 70% of healthy individuals. These contracti...
textabstractPurpose: The resistance offered to urinary flow by the urethra is one of the facto...
Objectves To obtain information on the mechanisms of female rat micturition using a model in which p...
textabstractIn this study, the mechanism involved in the initiation of voiding was investi...
To study the relative importance of neurogenic factors in detrusor contractility and to relate a tot...
The course of micturition depends on bladder contractility and urethral resistance. The former is de...
The course of micturition depends on bladder contractility and urethral resistance. The former is de...
Purpose: Autonomous bladder activity can take the form of localized micromotions (MMs), suggesting t...
© 2015. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativec...
To determine the contribution of neural elements to micturition, we evaluated, in intact rats, the c...
Micromotions are phasic contractions of the bladder wall. During urine storage, such phasic activity...
Female Wistar rats were instrumented to record bladder pressure and to stimulate the left pelvic ner...
Micromotions are phasic contractions of the bladder wall. During urine storage, such phasic activity...
Micromotions are phasic contractions of the bladder wall. During urine storage, such phasic activity...