首页> 美国卫生研究院文献>Journal of Neurophysiology >Neurophysiology of Tactile Perception: A Tribute to Steven Hsiao: Metaplasticity in human primary somatosensory cortex: effects on physiology and tactile perception
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Neurophysiology of Tactile Perception: A Tribute to Steven Hsiao: Metaplasticity in human primary somatosensory cortex: effects on physiology and tactile perception

机译:触觉知觉的神经生理学:向萧敬腾致敬:人类原代体感皮层的可塑性:对生理学和触觉知觉的影响

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摘要

Theta-burst stimulation (TBS) over human primary motor cortex evokes plasticity and metaplasticity, the latter contributing to the homeostatic balance of excitation and inhibition. Our knowledge of TBS-induced effects on primary somatosensory cortex (SI) is limited, and it is unknown whether TBS induces metaplasticity within human SI. Sixteen right-handed participants (6 females, mean age 23 yr) received two TBS protocols [continuous TBS (cTBS) and intermittent TBS (iTBS)] delivered in six different combinations over SI in separate sessions. TBS protocols were delivered at 30 Hz and were as follows: a single cTBS protocol, a single iTBS protocol, cTBS followed by cTBS, iTBS followed by iTBS, cTBS followed by iTBS, and iTBS followed by cTBS. Measures included the amplitudes of the first and second somatosensory evoked potentials (SEPs) via median nerve stimulation, their paired-pulse ratio (PPR), and temporal order judgment (TOJ). Dependent measures were obtained before TBS and at 5, 25, 50, and 90 min following stimulation. Results indicate similar effects following cTBS and iTBS; increased amplitudes of the second SEP and PPR without amplitude changes to SEP 1, and impairments in TOJ. Metaplasticity was observed such that TOJ impairments following a single cTBS protocol were abolished following consecutive cTBS protocols. Additionally, consecutive iTBS protocols altered the time course of effects when compared with a single iTBS protocol. In conclusion, 30-Hz cTBS and iTBS protocols delivered in isolation induce effects consistent with a TBS-induced reduction in intracortical inhibition within SI. Furthermore, cTBS- and iTBS-induced metaplasticity appear to follow homeostatic and nonhomeostatic rules, respectively.
机译:人原发性运动皮层上的Theta-burst刺激(TBS)引起可塑性和可塑性,后者可促进兴奋和抑制的体内平衡。我们对TBS诱导的对原代体感皮层(SI)的影响的知识是有限的,尚不清楚TBS是否在人类SI内诱导了可塑性。十六位惯用右手的参与者(6位女性,平均年龄23岁)接受了两种TBS协议[连续TBS(cTBS)和间歇性TBS(iTBS)],分别通过六种不同的组合通过SI在不同的会话中提供。 TBS协议以30 Hz的频率传递,如下所示:单个cTBS协议,单个iTBS协议,cTBS,然后是cTBS,iTBS,然后是iTBS,cTBS,然后是iTBS,以及iTBS,然后是cTBS。测量方法包括通过正中神经刺激产生的第一和第二体感诱发电位(SEP)的幅度,其配对脉冲比(PPR)和时间顺序判断(TOJ)。在TBS之前以及刺激后5、25、50和90分钟获得了相关的测量值。结果表明,在cTBS和iTBS之后,效果相似。第二个SEP和PPR的幅度增加,而SEP 1的幅度没有变化,并且TOJ受损。观察到了可塑性,使得在遵循连续cTBS方案后取消了单一cTBS方案下的TOJ损伤。此外,与单个iTBS协议相比,连续的iTBS协议改变了效果的时间过程。总之,隔离提供的30 Hz cTBS和iTBS协议可诱发与TBS诱导的SI内皮质内抑制减少相一致的效应。此外,cTBS和iTBS诱导的可塑性分别遵循稳态和非稳态规则。

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