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Neural Circuits: Physiological processes influencing motor-evoked potential duration with voluntary contraction

机译:神经回路:生理过程影响运动诱发的潜在持续时间与自愿收缩

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摘要

Voluntary contraction leads to facilitation of motor-evoked potentials (MEPs) producing greater amplitude, shorter onset latency, and prolonged duration of the electromyography potential. Whereas hyperexcitability of spinal motoneurons and changes in descending corticospinal volleys have been proposed as putative mechanisms for changes in MEP amplitude and onset latency, a contribution of propriospinal interneurons, exerting modulatory effects on α-motoneurons, has been proposed as a potential explanation for prolongation of MEP duration. The aim of the present study is to gain further insight into the physiological processes underlying changes in MEP duration. Transcranial magnetic stimulation (TMS) studies were undertaken on 30 healthy controls, using a 90-mm circular coil, with MEPs recorded at rest and during facilitation, produced by contraction of abductor pollicis brevis. In the same experiment, short interval-intracortical inhibition (SICI) was recorded at rest. Facilitation resulted in a significant prolongation of MEP duration, which increased with stimulus intensity and was accompanied by an increase in MEP amplitude. The main effect (TMS intensity × activation state) was correlated with MEP duration (F = 10.9, P < 0.001), whereas TMS intensity (F = 30.5, P < 0.001) and activation state (F = 125.8, P < 0.001) in isolation were correlated with MEP amplitude. There was a significant inverse relationship between SICI and MEP duration at rest (R2 = 0.141, P = 0.041) and during facilitation (R2 = 0.340, P = 0.001). The present findings suggest that similar physiological processes mediate changes in the facilitated MEP duration and amplitude and that both cortical and nonpropriospinal spinal mechanisms contribute to changes in MEP duration.>NEW & NOTEWORTHY Muscle contraction is associated with a significant increase in motor-evoked potential (MEP) duration and amplitude. Whereas the increase in MEP duration was linear, the amplitude increase exhibited a ceiling effect. Importantly, the MEP duration increase strongly correlated with short interval-intracortical inhibition, a biomarker of motor cortical function. This suggests that whereas similar physiological processes contribute to changes in facilitated MEP duration and amplitude, cortical mechanisms appear to contribute to MEP duration changes.
机译:自愿收缩可促进运动诱发电位(MEP)产生更大的振幅,更短的发作潜伏期和延长肌电图电位的持续时间。脊髓运动神经元的过度兴奋和皮质脊髓降落的改变被认为是MEP振幅和发作潜伏期变化的推定机制,而提议的螺旋体神经元对α-运动神经元起调节作用,可以作为延长脊髓神经元的潜在解释。 MEP持续时间。本研究的目的是进一步了解MEP持续时间变化背后的生理过程。经30例健康对照者使用90毫米圆形线圈进行经颅磁刺激(TMS)研究,记录在静止和促进过程中由外展性短缩外展肌收缩产生的MEP。在同一实验中,静止时记录了短暂的皮层内抑制(SICI)。促进导致MEP持续时间的显着延长,其随着刺激强度的增加而增加,并伴随MEP振幅的增加。主要影响(TMS强度×激活状态)与MEP持续时间(F = 10.9,P <0.001)相关,而TMS强度(F = 30.5,P <0.001)和激活状态(F = 125.8,P <0.001)相关。隔离度与MEP振幅相关。在休息(R 2 = 0.141,P = 0.041)和促进期间,SICI与MEP持续时间之间存在显着的反比关系(R 2 = 0.340,P = 0.001) 。本研究结果表明,相似的生理过程介导了MEP持续时间和振幅的改变,而皮质和非脊椎脊髓机制均导致MEP持续时间的改变。> NEW&NOTEWORTHY 运动诱发电位(MEP)的持续时间和幅度。虽然MEP持续时间的增加是线性的,但振幅增加表现出上限效应。重要的是,MEP持续时间的增加与短时间间隔皮层内抑制(运动皮层功能的生物标志物)密切相关。这表明,尽管相似的生理过程有助于促进MEP持续时间和振幅的改变,但皮质机制似乎有助于MEP持续时间的改变。

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