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Spinal Excitability Changes after Transspinal and Transcortical Paired Associative Stimulation in Humans

机译:经人脊椎和皮质对配对联合刺激后脊髓兴奋性变化。

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摘要

Paired associative stimulation (PAS) produces enduring neuroplasticity based on Hebbian associative plasticity. This study established the changes in spinal motoneuronal excitability by pairing transcortical and transspinal stimulation. Transcortical stimulation was delivered after (transspinal-transcortical PAS) or before (transcortical-transspinal PAS) transspinal stimulation. Before and after 40 minutes of each PAS protocol, spinal neural excitability was assessed based on the amplitude of the transspinal-evoked potentials (TEPs) recorded from ankle muscles of both legs at different stimulation intensities (recruitment input-output curve). Changes in TEPs amplitude in response to low-frequency stimulation and paired transspinal stimuli were also established before and after each PAS protocol. TEP recruitment input-output curves revealed a generalized depression of TEPs in most ankle muscles of both legs after both PAS protocols that coincided with an increased gain only after transcortical-transspinal PAS. Transcortical-transspinal PAS increased and transspinal-transcortical PAS decreased the low-frequency-dependent TEP depression, whereas neither PAS protocol affected the TEP depression observed upon paired transspinal stimuli. These findings support the notion that transspinal and transcortical PAS has the ability to alter concomitantly cortical and spinal synaptic activity. Transspinal and transcortical PAS may contribute to the development of rehabilitation strategies in people with bilateral increased motoneuronal excitability due to cortical or spinal lesions.
机译:配对联想刺激(PAS)基于Hebbian联想可塑性产生持久的神经可塑性。这项研究通过经皮和经脊椎刺激的结合建立了脊柱神经元兴奋性的变化。经皮刺激是在经皮刺激之后(经椎-经皮PAS)或经过(经皮皮质-经椎PAS)进行的。在每个PAS方案的40分钟之前和之后,根据在不同刺激强度(招募输入-输出曲线)下从双腿的脚踝肌肉记录的经椎间盘诱发电位(TEP)的幅度来评估脊髓神经兴奋性。在每个PAS方案之前和之后,还确定了响应低频刺激和配对的经脊椎刺激的TEPs振幅变化。 TEP募集的输入-输出曲线显示,在两种PAS方案后,双腿大多数踝部肌肉的TEP普遍降低,仅在经皮皮质-经椎管PAS后,增益增加。经皮-经-椎间动脉PAS增加,经皮-经-皮层PAS降低低频依赖性TEP抑制,而两种PAS方案均未影响配对的经椎间刺激后观察到的TEP抑制。这些发现支持以下观点,即椎管和经皮PAS具有同时改变皮质和脊髓突触活性的能力。经椎和经皮PAS可能有助于因皮层或脊柱病变而使双侧运动神经元兴奋性增加的人制定康复策略。

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