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猫头部运动相关肌肉运动神经元的反射联系

Reflex connexions of motoneurones of muscles involved in head movement in the cat.

作者信息

Rapoport S

出版信息

J Physiol. 1979 Apr;289:311-27. doi: 10.1113/jphysiol.1979.sp012739.

Abstract
  1. The reflex connexions from muscle afferents and ventral root fibres to the motoneurones of the muscles biventer-cervicis, complexus, sternocleidomastoid, trapezius and splenius, the principal muscles involved in head movement in the cat, were studied with the technique of intracellular recording. 2. Electrical stimulation of homonymous muscle afferents of biventer-cervicis and complexus, sternocleidomastoid and trapezius, at strengths below 1.6 times threshold of the dorsal root afferent volley, produced monosynaptic e.p.s.p.s in the corresponding motoneurones. Recruitment of higher threshold muscle afferents produced additional p.s.p.s with longer central delays. 3. Stimulation of low-threshold muscle afferents did not produce any p.s.p.s in the motoneurones of the ipsilateral antagonist. Stimulation of higher threshold afferents evoked i.p.s.p.s with central delays longer than 1.6 msec, or mixed e.p.s.p.-i.p.s.p.s in the ipsilateral antagonist. 4. Mixed e.p.s.p.-i.p.s.p.s or i.p.s.p.s with central delays longer than 1.5 msec were evoked in trapezius motoneurones upon stimulation of high threshold afferents from biventer-cervicis and complexus, while stimulation of low-threshold biventercervicis and complexus afferents evoked no p.s.p.s in trapezius motoneurones. 5. Stimulation of contralateral low-threshold biventer-cervicis and complexus afferents evoked a sequence of i.p.s.p. disinhibition in sternocleidomastoid motoneurones, and vice versa, with central delays longer than 1.7 msec. 6. Stimulation of the deafferented biventer-cervicis, complexus, splenius, sternocleidomastoid and trapezius muscle nerves frequently activated interneurones in the ventral horn at monosynaptic central delays. Activation of homoynmous ventral root fibres rarely evoked p.s.p.s in biventer-cervicis, complexius, splenius or sternocleidomastoid motoneurones, while it produced disynaptic i.p.s.p.s in 80% of trapezius motoneurones. 7. It is concluded that Ia reciprocal inhibition and recurrent inhibition, two reflex circuits which are so prominent in limb segments of the spinal cord, do not play a major role in the generation of head movement. Rather, head movement may be primarily controlled from supraspinal centres.
摘要
  1. 采用细胞内记录技术,研究了猫头部运动所涉及的主要肌肉,即二腹肌颈肌、头最长肌、胸锁乳突肌、斜方肌和夹肌,从肌肉传入纤维和腹根纤维到其运动神经元的反射联系。2. 对二腹肌颈肌、头最长肌、胸锁乳突肌和斜方肌的同名肌肉传入纤维进行电刺激,强度低于背根传入冲动阈值的1.6倍时,在相应的运动神经元中产生单突触兴奋性突触后电位。募集阈值较高的肌肉传入纤维会产生额外的突触后电位,其中枢延迟更长。3. 刺激低阈值肌肉传入纤维在同侧拮抗肌的运动神经元中未产生任何突触后电位。刺激阈值较高的传入纤维会在同侧拮抗肌中诱发中枢延迟超过1.6毫秒的抑制性突触后电位,或兴奋性突触后电位 - 抑制性突触后电位混合反应。4. 刺激二腹肌颈肌和头最长肌的高阈值传入纤维时,斜方肌运动神经元会出现中枢延迟超过1.5毫秒的兴奋性突触后电位 - 抑制性突触后电位混合反应或抑制性突触后电位,而刺激二腹肌颈肌和头最长肌的低阈值传入纤维时,斜方肌运动神经元未诱发突触后电位。5. 刺激对侧二腹肌颈肌和头最长肌的低阈值传入纤维,会在胸锁乳突肌运动神经元中诱发一系列抑制性突触后电位去抑制反应,反之亦然,中枢延迟超过1.7毫秒。6. 刺激去传入神经的二腹肌颈肌、头最长肌、夹肌、胸锁乳突肌和斜方肌的肌肉神经,经常在单突触中枢延迟时激活腹角中的中间神经元。刺激同名腹根纤维很少在二腹肌颈肌、头最长肌、夹肌或胸锁乳突肌运动神经元中诱发突触后电位,而在80%的斜方肌运动神经元中产生双突触抑制性突触后电位。7. 得出的结论是,脊髓肢体节段中非常突出的两种反射回路,即Ia交互抑制和回返抑制,在头部运动的产生中不起主要作用。相反,头部运动可能主要由脊髓上中枢控制。

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