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Excitability Changes in Sacral Afferents Innervating the Urethra, Perineum and Hindlimb Skin of the Cat During Micturition

Overview
Journal J Physiol
Specialty Physiology
Date 1998 Dec 16
PMID 9852338
Citations 12
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Abstract

1. Excitability changes in afferents innervating the urethra, perineum and hindlimb were measured in decerebrated cats during micturition and in response to stimulation of lumbosacral afferents. Increases in excitability were interpreted as primary afferent depolarization (PAD) and decreases as primary afferent hyperpolarization. 2. Excitability increases were observed in 11 of 19 urethral pudendal afferents during micturition. Four of these 11 afferents showed an excitability increase during voiding. Seven of these showed a biphasic change with a decrease in excitability when sphincter activity resumed at the end of the void. Three of 19 afferents showed an excitability decrease during micturition and no change was detected in five afferents. 3. During micturition, the peak amplitude of urethral afferent-evoked excitatory postsynaptic potentials in seven of eight sphincter motoneurones was diminished to a mean of 36% of control values. 4. Eighty per cent of hindlimb cutaneous afferents and 50% of dorsal penile/clitoral and superficial perineal nerve afferents in the sacral cord showed increased excitability during voiding. No excitability increases were measured in 13 hindlimb cutaneous fibres examined in the lumbar segments. 5. PAD was observed in sacral urethral, perineal and hindlimb cutaneous afferents in response to electrical stimulation of other perineal, urethral, hindlimb cutaneous and group II muscle afferents. 6. It is concluded that control of transmission from urethral afferents by the micturition circuitry is different to that by sensory transmission from hindlimb and perineal regions during micturition. We hypothesize that more than one population of sacral PAD-mediating interneurones is involved.

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References
1.
Shefchyk S, Buss R . Urethral pudendal afferent-evoked bladder and sphincter reflexes in decerebrate and acute spinal cats. Neurosci Lett. 1998; 244(3):137-40. DOI: 10.1016/s0304-3940(98)00155-4. View

2.
Shimoda N, Takakusaki K, Nishizawa O, Tsuchida S, Mori S . The changes in the activity of pudendal motoneurons in relation to reflex micturition evoked in decerebrate cats. Neurosci Lett. 1992; 135(2):175-8. DOI: 10.1016/0304-3940(92)90430-f. View

3.
Ramirez-Leon V, Ulfhake B . GABA-like immunoreactive innervation and dendro-dendritic contacts in the ventrolateral dendritic bundle in the cat S1 spinal cord segment: an electron microscopic study. Exp Brain Res. 1993; 97(1):1-12. DOI: 10.1007/BF00228812. View

4.
Cooper K . Cutaneous mechanoreceptors of the glans penis of the cat. Physiol Behav. 1972; 8(5):793-6. DOI: 10.1016/0031-9384(72)90285-5. View

5.
Fedirchuk B, Hochman S, Shefchyk S . An intracellular study of perineal and hindlimb afferent inputs onto sphincter motoneurons in the decerebrate cat. Exp Brain Res. 1992; 89(3):511-6. DOI: 10.1007/BF00229875. View