Fedirchuk B, Downie J W, Shefchyk S J
Department of Physiology, University of Manitoba, Winnipeg, Canada.
J Neurosci. 1994 Oct;14(10):6153-9. doi: 10.1523/JNEUROSCI.14-10-06153.1994.
These experiments were undertaken to examine whether both premotoneuronal mechanisms and direct actions on motoneurons could contribute to suppression of excitatory perineal reflex pathways during micturition. Intracellular recordings were obtained from motoneurons innervating the external urethral sphincter (EUS), external anal sphincter (EAS), and selected hindlimb muscles in decerebrate male cats. The peak amplitudes of EPSPs evoked by electrical stimulation of peripheral cutaneous afferents were measured during micturition. In the EUS, EAS, and hindlimb motoneurons examined, EPSPs produced by stimulation of perineal afferents (superficial perineal or sensory pudendal nerves) were reduced in amplitude during micturition. The sample of PSPs evoked by stimulation of hindlimb cutaneous nerves recorded in hindlimb motoneurons revealed that these PSPs could also be reduced. In contrast, no changes were seen in monosynaptic EPSPs evoked by muscle afferent stimulation. The present study demonstrates that during micturition there is a strong suppression of perineal reflexes to both sphincter and hindlimb motoneurons. Since reduced EUS activity is required for efficient micturition, suppression of the strong excitatory perineal input to EUS motoneurons likely contributes to decreased EUS activity during the bladder contraction. It appears that the micturition circuitry utilizes both premotoneuronal mechanisms and direct motoneuronal inhibition to achieve this reflex suppression. The function of the micturition-related reduction of perineal reflexes to hindlimb or EAS motoneurons is not known at this time and further investigations are required to elucidate the interaction between micturition circuitry and hindlimb cutaneous pathways.
进行这些实验是为了研究排尿过程中,运动神经元前机制和对运动神经元的直接作用是否都有助于抑制兴奋性会阴部反射通路。对去大脑的雄性猫支配尿道外括约肌(EUS)、肛门外括约肌(EAS)和选定后肢肌肉的运动神经元进行细胞内记录。在排尿过程中测量电刺激外周皮肤传入神经诱发的兴奋性突触后电位(EPSP)的峰值幅度。在所检查的EUS、EAS和后肢运动神经元中,刺激会阴部传入神经(会阴浅神经或阴部感觉神经)产生的EPSP在排尿过程中幅度减小。在后肢运动神经元中记录到的刺激后肢皮肤神经诱发的PSP样本显示,这些PSP也会减小。相比之下,肌肉传入神经刺激诱发的单突触EPSP没有变化。本研究表明,排尿过程中会阴部对括约肌和后肢运动神经元的反射受到强烈抑制。由于有效的排尿需要降低EUS活动,抑制对EUS运动神经元的强烈兴奋性会阴部输入可能有助于膀胱收缩期间EUS活动的降低。看来排尿回路利用运动神经元前机制和直接的运动神经元抑制来实现这种反射抑制。目前尚不清楚排尿相关的会阴部对后肢或EAS运动神经元反射减少的功能,需要进一步研究以阐明排尿回路与后肢皮肤通路之间的相互作用。