IEEE Trans Neural Syst Rehabil Eng. 2020 Jan;28(1):23-31. doi: 10.1109/TNSRE.2019.2939671. Epub 2019 Nov 18.
Neural activity tracks the envelope of a speech signal at latencies from 50 ms to 300 ms. Modulating this neural tracking through transcranial alternating current stimulation influences speech comprehension. Two important variables that can affect this modulation are the latency and the phase of the stimulation with respect to the sound. While previous studies have found an influence of both variables on speech comprehension, the interaction between both has not yet been measured. We presented 17 subjects with speech in noise coupled with simultaneous transcranial alternating current stimulation. The currents were based on the envelope of the target speech but shifted by different phases, as well as by two temporal delays of 100 ms and 250 ms. We also employed various control stimulations, and assessed the signal-to-noise ratio at which the subject understood half of the speech. We found that, at both latencies, speech comprehension is modulated by the phase of the current stimulation. However, the form of the modulation differed between the two latencies. Phase and latency of neurostimulation have accordingly distinct influences on speech comprehension. The different effects at the latencies of 100 ms and 250 ms hint at distinct neural processes for speech processing.
神经活动在 50 毫秒至 300 毫秒的潜伏期内跟踪语音信号的包络。通过经颅交流电刺激调节这种神经跟踪会影响语音理解。两个可能影响这种调制的重要变量是刺激相对于声音的潜伏期和相位。虽然之前的研究已经发现这两个变量都对语音理解有影响,但它们之间的相互作用尚未被测量。我们向 17 名受试者呈现了噪声中的语音,并同时进行了经颅交流电刺激。电流基于目标语音的包络,但相位不同,还有两个时间延迟分别为 100 毫秒和 250 毫秒。我们还采用了各种对照刺激,并评估了受试者理解一半语音时的信噪比。我们发现,在两种潜伏期下,语音理解都受到电流刺激相位的调节。然而,在这两种潜伏期下,调制的形式有所不同。因此,神经刺激的相位和潜伏期对语音理解有不同的影响。100 毫秒和 250 毫秒潜伏期的不同影响暗示了语音处理的不同神经过程。