Diepenbrock Jan-Philipp, Jeschke Marcus, Ohl Frank W, Verhey Jesko
Leibniz Institute for Neurobiology
Universitätsmedizin Göttingen.
J Neurophysiol. 2017 Feb;117(2):853-867. doi: 10.1152/jn.00191.2016. Epub 2016 Oct 26.
Auditory signals that contain coherent level fluctuations of a masker in different frequency regions enhance the detectability of an embedded sinusoidal target signal, an effect commonly known as comodulation masking release (CMR). Neural correlates have been proposed at different stages of the auditory system. While later stages seem to suppress the response to the masker, earlier stages are more likely to enhance their response to the signal when the masker is comodulated. Using a flanking band masking paradigm, the present study investigates how CMR is represented at the level of the inferior colliculus of the Mongolian gerbil. The responses to a target signal at various sound pressure levels in three different masking conditions were compared. In one condition the masker was a 10-Hz amplitude modulated sinusoid centered at the signal frequency while in the other two conditions six off-frequency carriers (flanking bands) were added. From 81 units 26 showed a change that enhanced the detectability of the signal if the temporal modulation of the added flanking bands was identical to that of the masker at the signal frequency compared to the other two masking conditions. This study shows that the response characteristics of these neurons represent an intermediate stage between the representation in the cochlear nucleus and the auditory cortex. This means that the response is increased during the signal intervals but is also decreased for the following masker portions.
包含掩蔽声在不同频率区域的连贯电平波动的听觉信号,可增强嵌入的正弦目标信号的可检测性,这种效应通常称为共调制掩蔽释放(CMR)。在听觉系统的不同阶段都提出了神经关联。虽然后期阶段似乎会抑制对掩蔽声的反应,但当掩蔽声被共调制时,早期阶段更有可能增强对信号的反应。本研究采用侧翼带掩蔽范式,探究了蒙古沙鼠下丘水平如何呈现CMR。比较了在三种不同掩蔽条件下,目标信号在各种声压级下的反应。在一种条件下,掩蔽声是一个以信号频率为中心的10赫兹调幅正弦波,而在另外两种条件下,添加了六个偏离频率的载波(侧翼带)。与其他两种掩蔽条件相比,如果添加的侧翼带的时间调制与信号频率处的掩蔽声的时间调制相同,那么在81个单位中,有26个单位表现出增强信号可检测性的变化。这项研究表明,这些神经元的反应特性代表了耳蜗核和听觉皮层表征之间的中间阶段。这意味着在信号间隔期间反应增强,但在随后的掩蔽声部分反应也会减弱。