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小鼠慢调频声音激活的听觉皮层区。

Auditory cortical areas activated by slow frequency-modulated sounds in mice.

机构信息

Department of Neurophysiology, Brain Research Institute, Niigata University, Asahi-machi, Niigata, Japan.

出版信息

PLoS One. 2013 Jul 17;8(7):e68113. doi: 10.1371/journal.pone.0068113. Print 2013.

Abstract

Species-specific vocalizations in mice have frequency-modulated (FM) components slower than the lower limit of FM direction selectivity in the core region of the mouse auditory cortex. To identify cortical areas selective to slow frequency modulation, we investigated tonal responses in the mouse auditory cortex using transcranial flavoprotein fluorescence imaging. For differentiating responses to frequency modulation from those to stimuli at constant frequencies, we focused on transient fluorescence changes after direction reversal of temporally repeated and superimposed FM sweeps. We found that the ultrasonic field (UF) in the belt cortical region selectively responded to the direction reversal. The dorsoposterior field (DP) also responded weakly to the reversal. Regarding the responses in UF, no apparent tonotopic map was found, and the right UF responses were significantly larger in amplitude than the left UF responses. The half-max latency in responses to FM sweeps was shorter in UF compared with that in the primary auditory cortex (A1) or anterior auditory field (AAF). Tracer injection experiments in the functionally identified UF and DP confirmed that these two areas receive afferent inputs from the dorsal part of the medial geniculate nucleus (MG). Calcium imaging of UF neurons stained with fura-2 were performed using a two-photon microscope, and the presence of UF neurons that were selective to both direction and direction reversal of slow frequency modulation was demonstrated. These results strongly suggest a role for UF, and possibly DP, as cortical areas specialized for processing slow frequency modulation in mice.

摘要

在小鼠中,物种特异性发声具有低于听觉皮层核心区域调频(FM)方向选择性下限的调频(FM)成分。为了确定对慢调频选择性的皮层区域,我们使用跨颅黄素蛋白荧光成像研究了小鼠听觉皮层的音调反应。为了将对调频的反应与对恒定频率刺激的反应区分开来,我们专注于在时间重复和叠加的 FM 扫频方向反转后瞬态荧光变化。我们发现,在带皮质区域的超声场(UF)选择性地对方向反转作出反应。背侧后场(DP)也对反转有微弱反应。关于 UF 的反应,没有发现明显的音调图,并且右 UF 的反应幅度明显大于左 UF 的反应幅度。FM 扫频反应的半最大潜伏期在 UF 中比在初级听觉皮层(A1)或前听觉区(AAF)中更短。在功能上确定的 UF 和 DP 中的示踪剂注射实验证实,这两个区域从内侧膝状体核(MG)的背部分支接收传入输入。使用双光子显微镜对用 fura-2 染色的 UF 神经元进行钙成像,证明了 UF 神经元对慢调频的方向和方向反转都具有选择性。这些结果强烈表明 UF 和可能的 DP 作为专门处理小鼠慢调频的皮层区域的作用。

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