Persistent adaptations in sensorimotor interneuron circuits in the motor cortex with a history of sport-related concussion.

IF 1.7 4区 医学 Q4 NEUROSCIENCES Experimental Brain Research Pub Date : 2024-11-28 DOI:10.1007/s00221-024-06964-y
Kara D Hayes, Madison E R Khan, Kylee R Graham, W Richard Staines, Sean K Meehan
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Abstract

Recent studies highlight a persistent increase in subsequent injury risk following a sport-related concussion (SRC) despite clinical recovery. However, markers of persistent alterations in sensorimotor integration have yet to be identified. One possibility is that compensatory adaptation following SRC may only be unmasked during transient periods of high task complexity in specific sensorimotor circuits. The current study used short-latency afferent inhibition (SAI) to investigate the long-term sequelae of sport-related concussion (SRC) in different short-latency sensorimotor circuits converging in the motor cortex. Specific sensorimotor circuits sensitive to posterior-anterior current with a positive phase lasting 120µs (PA120) and anterior-posterior current with a positive phase lasting 30µs (AP30) were assessed using controllable pulse parameter transcranial magnetic stimulation (cTMS) while young adults with and without a history of SRC were at rest or responded to valid and invalid sensorimotor cues. SAI was quantified as the ratio of the motor-evoked potential (MEP) elicited by peripherally conditioned cTMS stimuli to the unconditioned MEP for each cTMS configuration. Individuals with a SRC history demonstrated persistent adaptation in AP30 SAI, but only in response to invalid cues. Persistent adaptation in AP30 SAI was not apparent at rest or during simple sensorimotor transformations in response to valid cues. PA120 SAI demonstrated similar responses at rest and in response to both valid and invalid cues, regardless of SRC history. AP30-sensitive sensorimotor circuits may mark the long-term SRC sequelae and the increased susceptibility to momentary breakdowns in sensorimotor integration during periods of high cognitive-motor demands.

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运动相关脑震荡病史对运动皮层中感觉运动中间神经元回路的持续适应。
最近的研究强调,尽管临床康复,但运动相关脑震荡(SRC)后的后续伤害风险会持续增加。然而,感知运动整合持续改变的标志物尚未确定。一种可能性是,SRC 后的代偿性适应只有在特定感觉运动回路任务复杂度较高的短暂时期才会显现出来。目前的研究利用短时传入抑制(SAI)来研究运动相关脑震荡(SRC)在汇聚于运动皮层的不同短时感觉运动回路中造成的长期后遗症。研究人员使用可控脉冲参数经颅磁刺激(cTMS)评估了对正相位持续 120µs 的后-前电流(PA120)和正相位持续 30µs 的前-后电流(AP30)敏感的特定感觉运动回路,当时有和没有 SRC 病史的年轻人都处于静息状态,或对有效和无效的感觉运动线索做出反应。SAI被量化为每种经颅磁刺激配置下,外周条件性经颅磁刺激激发的运动诱发电位(MEP)与非条件性MEP之比。有SRC病史的个体在AP30 SAI中表现出持续的适应性,但仅针对无效线索。AP30 SAI 的持续适应在静息状态或简单的感觉运动转换过程中对有效线索的反应并不明显。PA120 SAI 在静息状态以及对有效和无效线索的反应中表现出相似的反应,与 SRC 历史无关。对 AP30 敏感的感觉运动回路可能标志着长期的 SRC 后遗症,以及在认知-运动需求较高期间对感觉运动整合瞬间中断的易感性增加。
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来源期刊
CiteScore
3.60
自引率
5.00%
发文量
228
审稿时长
1 months
期刊介绍: Founded in 1966, Experimental Brain Research publishes original contributions on many aspects of experimental research of the central and peripheral nervous system. The focus is on molecular, physiology, behavior, neurochemistry, developmental, cellular and molecular neurobiology, and experimental pathology relevant to general problems of cerebral function. The journal publishes original papers, reviews, and mini-reviews.
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