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Short-latency crossed responses in the human biceps femoris muscle

机译:人类股二头肌的短时延交叉反应

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Interlimb reflexes contribute to the central neural co-ordination between different limbs in both humans and animals. Although commissural interneurons have only been directly identified in animals, spinally-mediated interlimb reflexes have been discovered in a number of human lower limb muscles, indicating their existence in humans. The present study aimed to investigate whether short-latency crossed-spinal reflexes are present in the contralateral biceps femoris (cBF) muscle following ipsilateral knee (iKnee) joint rotations during a sitting task, where participants maintained a slight pre-contraction in the cBF. Following iKnee extension joint rotations, an inhibitory reflex was observed in the surface electromyographic (EMG) activity of the cBF, whereas a facilitatory reflex was observed in the cBF following iKnee flexion joint rotations. The onset latency of both cBF reflexes was 44ms, which is too fast for a transcortical pathway to contribute. The cBF inhibitory and facilitatory reflexes followed the automatic gain control principle, with the size of the response increasing as the level of background pre-contraction in the cBF muscle increased. In addition to the surface EMG, both short-latency inhibitory and facilitatory cBF reflexes were recorded directly at the motor unit level by i.m. EMG, and the same population of cBF motor units that were inhibited following iKnee extension joint rotations were facilitated following iKnee flexion joint rotations. Therefore, parallel interneuronal pathways (probably involving commissural interneurons) from ipsilateral afferents to common motoneurons in the contralateral leg can probably explain the perturbation direction-dependent reversal in the sign of the short-latency cBF reflex.
机译:肢间反射有助于人和动物不同肢体之间的中枢神经协调。尽管连合神经元仅在动物中直接鉴定,但在许多人的下肢肌肉中发现了脊髓介导的肢体反射,表明它们存在于人类中。本研究旨在调查在坐着过程中同侧膝盖(iKnee)关节旋转后,对侧股二头肌(cBF)肌肉中是否存在短时延交叉椎体反射,参与者在该部位保持了轻微的cBF前收缩。在iKnee伸展关节旋转之后,在cBF的表面肌电图(EMG)活性中观察到抑制性反射,而在iKnee屈曲关节旋转之后在cBF中观察到促进反射。两次cBF反射的发作潜伏期均为44毫秒,对于经皮层通路无法做出贡献而言,这太快了。 cBF抑制性反射和促进反射遵循自动增益控制原理,响应的大小随cBF肌肉中背景前收缩水平的增加而增加。除了表面肌电图外,通过I.m直接在运动单位水平记录了短时延抑制和促进性cBF反射。肌电图和iKnee屈伸关节旋转后被抑制的相同的cBF运动单位群体得到了促进。因此,从同侧传入神经到对侧腿的普通运动神经元的平行神经元间通路(可能涉及连合神经元间)可能以短时延cBF反射征象解释了扰动方向相关的逆转。

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