School of Medical, Indigenous and Health Sciences, Faculty of Science, Medicine and Health, University of Wollongong, Building 41, Northfields Avenue, Wollongong, NSW, 2522, Australia.
Department of Physical Therapy, College of Health Professions, Virgina Commonwealth University, Richmond, USA.
Exp Brain Res. 2022 Oct;240(10):2647-2657. doi: 10.1007/s00221-022-06440-5. Epub 2022 Aug 25.
Mounting evidence suggests that motor evoked potentials (MEPs) recorded in upper limb muscles with postural support roles following transcranial magnetic stimulation receive contributions from both corticospinal and non-corticospinal descending pathways. We tested the hypothesis that neural structures responsible for regulating upright balance are involved in transmitting late portions of TMS-induced MEPs in a lower limb muscle. MEPs were recorded in the medial gastrocnemius muscles of each leg, while participants supported their upright posture in five postural conditions that required different levels of support from the target muscles. We observed that early and late portions of the MEP were modulated independently, with early MEP amplitude being reduced when high levels of postural support were required from a target muscle. Independent modulation of early and late MEPs by altered postural demand suggests largely separable transmission of each part of the MEP. The early component of the MEP is likely generated by fast-conducting corticospinal pathways, whereas the later component may be primarily transmitted along a polysynaptic cortico-reticulospinal pathway.
越来越多的证据表明,经颅磁刺激后在上肢具有姿势支撑作用的肌肉中记录到的运动诱发电位(MEPs),既来自皮质脊髓束,也来自非皮质脊髓下行通路。我们假设,负责调节直立平衡的神经结构参与了经皮磁刺激引起的下肢肌肉中 MEP 后期部分的传递。在每条腿的内侧腓肠肌中记录 MEPs,同时参与者在五个需要目标肌肉提供不同水平支撑的姿势条件下保持直立姿势。我们观察到,MEP 的早期和晚期部分独立调节,当目标肌肉需要高水平的姿势支撑时,早期 MEP 幅度减小。早期和晚期 MEPs 的独立调节表明,MEP 的每个部分的传输是可分离的。MEP 的早期成分可能由快速传导的皮质脊髓束产生,而后期成分可能主要沿多突触皮质网状脊髓束传递。