Department of Neurosciences.
Cereb Cortex. 2013 Oct;23(10):2370-9. doi: 10.1093/cercor/bhs228. Epub 2012 Aug 8.
We combined magnetoencephalography (MEG) with magnetic resonance imaging and electrocorticography to separate in anatomy and latency 2 fundamental stages underlying speech comprehension. The first acoustic-phonetic stage is selective for words relative to control stimuli individually matched on acoustic properties. It begins ∼60 ms after stimulus onset and is localized to middle superior temporal cortex. It was replicated in another experiment, but is strongly dissociated from the response to tones in the same subjects. Within the same task, semantic priming of the same words by a related picture modulates cortical processing in a broader network, but this does not begin until ∼217 ms. The earlier onset of acoustic-phonetic processing compared with lexico-semantic modulation was significant in each individual subject. The MEG source estimates were confirmed with intracranial local field potential and high gamma power responses acquired in 2 additional subjects performing the same task. These recordings further identified sites within superior temporal cortex that responded only to the acoustic-phonetic contrast at short latencies, or the lexico-semantic at long. The independence of the early acoustic-phonetic response from semantic context suggests a limited role for lexical feedback in early speech perception.
我们结合脑磁图(MEG)与磁共振成像和皮质电图,将言语理解的两个基本阶段在解剖和潜伏期上区分开来。第一个声学-语音阶段是相对于单独在声学特性上匹配的控制刺激对单词的选择性。它始于刺激开始后约 60 毫秒,定位于中颞上皮质。在另一个实验中复制了该阶段,但与同一受试者对音调的反应强烈分离。在相同的任务中,同一图片对相同单词的语义启动会在更广泛的网络中调节皮质处理,但这要到约 217 毫秒才开始。在每个个体受试者中,与词汇语义调制相比,声学语音处理的较早出现具有显著意义。MEG 源估计在另外两个执行相同任务的受试者中通过颅内局部场电位和高伽马功率响应得到了确认。这些记录进一步确定了在颞上皮质内的部位,这些部位仅在短潜伏期时对声学语音对比有反应,或在长潜伏期时对词汇语义有反应。早期声学语音反应与语义语境的独立性表明,词汇反馈在早期言语感知中作用有限。