Effects of Complex Movement on the Excitability of the Ipsilateral Primary Motor Cortex and Spinal Motoneurons Contralateral to the Movement: A Comparison of Ball Rotation and Grasping Tasks with Equivalent Muscle Activity

被引:0
作者
Kosuge, Rin [1 ]
Sukegawa, Takehiro [2 ]
Akaiwa, Mayu [3 ]
Shibata, Eriko [4 ]
Kurokawa, Ryo [1 ]
Sugawara, Yasushi [1 ]
Kudoh, Satoshi [3 ]
Matsuda, Yuya [1 ]
Saito, Hidekazu [5 ]
Sasaki, Takeshi [6 ]
Sugawara, Kazuhiro [6 ]
机构
[1] Sapporo Med Univ, Grad Sch Hlth Sci, Sapporo 0608556, Japan
[2] Hokuto Social Med Corp, Dept Rehabil, Phys Therapy Div, Tokachi Rehabil Ctr, Obihiro 0800833, Japan
[3] Kashiwaba Neurosurg Hosp, Dept Rehabil, Sapporo 0620051, Japan
[4] Hokkaido Bunkyo Univ, Fac Healthcare & Sci, Dept Rehabil, Phys Therapy, Eniwa 0611449, Japan
[5] Sapporo Med Univ, Sch Hlth Sci, Dept Occupat Therapy, Sapporo 0608556, Japan
[6] Sapporo Med Univ, Sch Hlth Sci, Dept Phys Therapy, Sapporo, 0608556, Japan
基金
日本学术振兴会;
关键词
transcranial magnetic stimulation; ipsilateral corticospinal tract; complex movement; electromyography; spinal motoneurons; DORSAL INTEROSSEOUS MUSCLE; MAGNETIC STIMULATION; VOLUNTARY CONTRACTION; FUNCTIONAL-ANATOMY; EVOKED-POTENTIALS; HUMAN-BRAIN; FACILITATION; ACTIVATION; RESPONSES; RECOVERY;
D O I
10.3390/brainsci15020171
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background/Objectives: Unilateral hand movements alter the excitability of the ipsilateral primary motor cortex (ipsi-M1) and contralateral spinal motoneurons. Although this excitability increases during complex, high muscle-activity movements, few studies have examined the excitability of ipsi-M1 and contralateral spinal motoneurons during complex movements while accounting for muscle activity. This study investigated the excitability of ipsi-M1 and contralateral spinal motoneurons during complex and simple movement tasks with comparable muscle activity between the two tasks. Methods: Nineteen healthy adult volunteers participated in this study. The ball rotation task was set as the complex movement task (BR condition), and the grasping task was set as the simple movement task (grasp condition), with peak muscle activity values comparable between the tasks. Motor-evoked potentials (MEPs) and F-waves were recorded from the abductor pollicis brevis muscle contralateral to the movement during task execution. The excitability parameters of ipsi-M1 and contralateral spinal motoneurons were calculated by dividing the MEP, F-wave persistence, and F/M amplitude values recorded in each condition by the corresponding values recorded at rest. These parameters were compared across the rest, BR, and grasp conditions. Results: All the excitability parameters of ipsi-M1 and contralateral spinal motoneurons increased during both the BR and grasp conditions compared with the rest condition but did not differ significantly between the BR and grasp conditions. Conclusions: The excitability of ipsi-M1 and contralateral spinal motoneurons was strongly influenced by the amount of muscle activity but not by the complexity of the movement.
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页数:11
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  • [11] Morishita T., Kubota S., Hirano M., Funase K., Different modulation of short- and long-latency interhemispheric inhibition from active to resting primary motor cortex during a fine-motor manipulation task, Physiol. Rep, 2, (2014)
  • [12] Perez M.A., Cohen L.G., Mechanisms underlying functional changes in the primary motor cortex ipsilateral to an active hand, J. Neurosci, 28, pp. 5631-5640, (2008)
  • [13] Butefisch C.M., Kleiser R., Korber B., Muller K., Wittsack H.J., Homberg V., Seitz R.J., Recruitment of contralesional motor cortex in stroke patients with recovery of hand function, Neurology, 64, pp. 1067-1069, (2005)
  • [14] Calautti C., Leroy F., Guincestre J.Y., Marie R.M., Baron J.C., Sequential activation brain mapping after subcortical stroke: Changes in hemispheric balance and recovery, Neuroreport, 12, pp. 3883-3886, (2001)
  • [15] Marshall R.S., Perera G.M., Lazar R.M., Krakauer J.W., Constantine R.C., DeLaPaz R.L., Evolution of cortical activation during recovery from corticospinal tract infarction, Stroke, 31, pp. 656-661, (2000)
  • [16] Revill K.P., Barany D.A., Vernon I., Rellick S., Caliban A., Tran J., Belagaje S.R., Nahab F., Haut M.W., Buetefisch C.M., Evaluating the Abnormality of Bilateral Motor Cortex Activity in Subacute Stroke Patients Executing a Unimanual Motor Task with Increasing Demand on Precision, Front. Neurol, 13, (2022)
  • [17] Taniguchi S., Kimura J., Yanagisawa T., Okada F., Yamada T., Taniguchi S., Ootsuka T., Rest-induced suppression of anterior horn cell excitability as measured by F waves: Comparison between volitionally inactivated and control muscles, Muscle Nerve, 37, pp. 343-349, (2008)
  • [18] Rothwell J.C., Day B.L., Berardelli A., Marsden C.D., Effects of motor cortex stimulation on spinal interneurones in intact man, Exp. Brain Res, 54, pp. 382-384, (1984)
  • [19] Andrushko J.W., Gould L.A., Renshaw D.W., Ekstrand C., Hortobagyi T., Borowsky R., Farthing J.P., High Force Unimanual Handgrip Contractions Increase Ipsilateral Sensorimotor Activation and Functional Connectivity, Neuroscience, 452, pp. 111-125, (2021)
  • [20] Muellbacher W., Facchini S., Boroojerdi B., Hallett M., Changes in motor cortex excitability during ipsilateral hand muscle activation in humans, Clin. Neurophysiol, 111, pp. 344-349, (2000)