Cattaneo L, Barchiesi G
Center for Mind/Brain Sciences (CIMeC), University of Trento, Italy.
Center for Mind/Brain Sciences (CIMeC), University of Trento, Italy.
Neuroscience. 2015 Sep 24;304:81-9. doi: 10.1016/j.neuroscience.2015.07.053. Epub 2015 Jul 21.
Sensory events in the space around us trigger specific motor patterns directed toward or away from the spatial location of the sensory source. Spatially-defined sensorimotor associations are well-known in the visual domain but less so for the auditory modality. In particular no spatially-directed audio-motor association has been described for the upper limb. We tested the instantaneous directional tuning of the corticospinal system by means of single-pulse transcranial magnetic stimulation (TMS) over the left motor cortex in 16 healthy volunteers while at rest. We recorded the lateral accelerations of the TMS-evoked movement by means of an accelerometer placed on the forearm. Acoustic stimuli (pure tone frequency=1000Hz, duration=50ms) coming from 25 different directions lying in the axial anterior half-plane at the height of the participant's ears were played on earphones. The entire set of sound directions covered a span of 160° (±80° where 0° is the frontal direction) at a fixed azimuth angle. Six different intervals between sound onset and TMS (0, 25, 50, 100, 150 and 200ms) were tested for each sound direction. Significant correlations were found between sound origin and TMS-evoked arm accelerations only when TMS was delivered 50ms prior to sound onset. We show the presence in the upper limb motor system of auditory spatial tuning. Sound information accesses the motor system at very short latency, potentially compatible with both a subcortical and a cortical origin of the response. The use of TMS-evoked accelerations allowed us to disclose a strict directional tuning in audio-motor associations.
我们周围空间中的感觉事件会触发特定的运动模式,这些运动模式要么指向感觉源的空间位置,要么远离该位置。空间定义的感觉运动关联在视觉领域广为人知,但在听觉模态中则不太常见。特别是,尚未描述上肢存在空间定向的听觉 - 运动关联。我们通过对16名健康志愿者在休息时的左运动皮层进行单脉冲经颅磁刺激(TMS),测试了皮质脊髓系统的瞬时方向调谐。我们通过放置在前臂上的加速度计记录TMS诱发运动的横向加速度。来自位于参与者耳朵高度的轴向半前平面中25个不同方向的声学刺激(纯音频率 = 1000Hz,持续时间 = 50ms)通过耳机播放。在固定方位角下,整个声音方向集覆盖了160°的跨度(±80°,其中0°为前方方向)。对于每个声音方向,测试了声音开始和TMS之间的六个不同间隔(0、25、50、100、150和200ms)。仅当在声音开始前50ms施加TMS时,才发现声音源与TMS诱发的手臂加速度之间存在显著相关性。我们表明上肢运动系统中存在听觉空间调谐。声音信息以非常短的潜伏期进入运动系统,这可能与反应的皮层下和皮层起源都兼容。使用TMS诱发的加速度使我们能够揭示听觉 - 运动关联中的严格方向调谐。