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听觉刺激强度增加会导致皮质脊髓兴奋性更早、更快地上升。

Increased auditory stimulus intensity results in an earlier and faster rise in corticospinal excitability.

作者信息

St Germain Laura, Smith Victoria, Maslovat Dana, Carlsen Anthony

机构信息

School of Human Kinetics, University of Ottawa, 125 University Private, Ottawa, Ontario K1N 6N5, Canada.

School of Kinesiology, University of British Columbia, 6081 University Blvd, Vancouver, British Columbia V6T 1Z1, Canada.

出版信息

Brain Res. 2020 Jan 15;1727:146559. doi: 10.1016/j.brainres.2019.146559. Epub 2019 Nov 14.

Abstract

Increasing the intensity of auditory stimuli has been shown to produce faster simple reaction times (RTs). Typical explanations for this effect involve earlier detection of the more intense stimulus; however, these explanations fail to consider how stimulus intensity may impact response initiation processing. To investigate the mechanism responsible for the auditory stimulus intensity effect, transcranial magnetic stimulation (TMS) was applied at various times during the simple RT interval (equivalent to 0, 30, 45, 60, and 75% of baseline RT) to examine changes in corticospinal excitability after a go-signal of varying intensity (60, 70, 80, or 90 dB). Premotor RT data confirmed a stimulus intensity effect whereby the 90 dB stimulus resulted in faster RTs than all other intensities. Analysis of motor evoked potential (MEP) amplitude elicited by TMS across stimulus intensity conditions revealed that in the 80 dB and 90 dB conditions, corticospinal excitability began to increase earlier from baseline (pre-stimulus) levels, supporting the detection hypothesis. In addition, MEP amplitude increased at a greater rate during the RT interval for the 90 dB condition, indicative of impacts on response initiation. These results indicate that stimulus intensity effects result from a combination of earlier detection and faster initiation.

摘要

研究表明,增加听觉刺激的强度能够使简单反应时(RT)加快。对此效应的典型解释包括对更强刺激的更早检测;然而,这些解释并未考虑刺激强度如何影响反应启动过程。为了探究导致听觉刺激强度效应的机制,在简单反应时期间的不同时间点(相当于基线反应时的0%、30%、45%、60%和75%)施加经颅磁刺激(TMS),以检查在不同强度(60、70、80或90分贝)的启动信号后皮质脊髓兴奋性的变化。运动前反应时数据证实了刺激强度效应,即90分贝的刺激比所有其他强度的刺激导致更快的反应时。对跨刺激强度条件下TMS诱发的运动诱发电位(MEP)幅度的分析表明,在80分贝和90分贝的条件下,皮质脊髓兴奋性从基线(刺激前)水平开始更早增加,支持了检测假说。此外,在90分贝条件下的反应时期间,MEP幅度以更快的速率增加,表明对反应启动有影响。这些结果表明,刺激强度效应是由更早检测和更快启动共同作用的结果。

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