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人类V1/V2和V5/MT+中快速信号及后续处理的证据:一项关于运动感知的经颅磁刺激研究

Evidence for fast signals and later processing in human V1/V2 and V5/MT+: A TMS study of motion perception.

作者信息

Laycock Robin, Crewther David P, Fitzgerald Paul B, Crewther Sheila G

机构信息

School of Psychological Science, La Trobe University, Bundoora, Victoria 3086, Australia.

出版信息

J Neurophysiol. 2007 Sep;98(3):1253-62. doi: 10.1152/jn.00416.2007. Epub 2007 Jul 18.

DOI:10.1152/jn.00416.2007
PMID:17634339
Abstract

Evidence from human and primate studies suggests that fast visual processing may utilize signals projecting from primary visual cortex (V1) through the dorsal stream, to area V5/MT+ or beyond and subsequently back into V1. This coincides with the arrival of parvocellular signals en route to the ventral pathway and infero-temporal cortex. Such evidence suggests that the dorsal stream region V5/MT+ is activated rapidly through the traditional hierarchical pathway and also via a less-well-established direct signal to V5/MT+ bypassing V1. To test this, 16 healthy humans underwent transcranial magnetic stimulation (TMS) of V1/V2 and V5/MT+ while performing a motion-direction detection task. A three-alternate forced-choice design (left/right motion, stationary) allowed analysis of the quality of errors made, in addition to the more usual performance measures. Transient disruption of V1/V2 and V5/MT+ significantly reduced accuracy when TMS was applied at or near motion onset. Most participants also showed disrupted performance with TMS application over V1/V2 approximately 125 ms post motion onset, and significantly reduced accuracy at 158 ms with V5/MT+ stimulation. The two periods of disruption with V1/V2 TMS are suggestive of feedforward/feedback models, although the earlier period of disruption has not been reported in previous TMS studies. Very early activation of V5/MT+, evidenced by diminished accuracy and reduced perception of motion after TMS may be indicative of a thalamic-extrastriate pathway in addition to the traditionally expected later period of processing. A profound disruption of performance prestimulus onset is more likely to reflect disruption of top-down expectancy than disruption of visual processing.

摘要

来自人类和灵长类动物研究的证据表明,快速视觉处理可能利用从初级视觉皮层(V1)通过背侧通路投射到V5/MT+区域或更远部位,随后再回到V1的信号。这与小细胞信号在通往腹侧通路和颞下皮层途中的到达时间相吻合。此类证据表明,背侧流区域V5/MT+通过传统的层级通路迅速被激活,也可能通过一条尚未完全明确的绕过V1直接通往V5/MT+的信号通路被激活。为了验证这一点,16名健康受试者在执行运动方向检测任务时接受了对V1/V2和V5/MT+的经颅磁刺激(TMS)。除了更常用的表现测量指标外,三选一强制选择设计(向左/向右运动、静止)还能分析所犯错误的性质。当在运动开始时或接近运动开始时施加TMS时,V1/V2和V5/MT+的短暂干扰显著降低了准确性。大多数受试者在运动开始后约125毫秒对V1/V2施加TMS时也表现出表现受干扰,在对V5/MT+进行刺激时,158毫秒时准确性显著降低。V1/V2 TMS的这两个干扰期提示了前馈/反馈模型,尽管之前的TMS研究尚未报道过较早的干扰期。TMS后准确性降低和运动感知减弱所证明的V5/MT+的极早期激活,除了传统预期的较晚处理期外,可能还表明存在一条丘脑-纹外通路。刺激前开始时表现的严重干扰更可能反映自上而下预期的干扰,而不是视觉处理的干扰。

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