Peh Wendy Y X, Roberts Todd F, Mooney Richard
Department of Neurobiology, Duke University School of Medicine, Durham, North Carolina 27710.
Department of Neurobiology, Duke University School of Medicine, Durham, North Carolina 27710
J Neurosci. 2015 Apr 8;35(14):5589-605. doi: 10.1523/JNEUROSCI.2308-14.2015.
Vocal communication depends on the coordinated activity of sensorimotor neurons important to vocal perception and production. How vocalizations are represented by spatiotemporal activity patterns in these neuronal populations remains poorly understood. Here we combined intracellular recordings and two-photon calcium imaging in anesthetized adult zebra finches (Taeniopygia guttata) to examine how learned birdsong and its component syllables are represented in identified projection neurons (PNs) within HVC, a sensorimotor region important for song perception and production. These experiments show that neighboring HVC PNs can respond at markedly different times to song playback and that different syllables activate spatially intermingled PNs within a local (~100 μm) region of HVC. Moreover, noise correlations were stronger between PNs that responded most strongly to the same syllable and were spatially graded within and between classes of PNs. These findings support a model in which syllabic and temporal features of song are represented by spatially intermingled PNs functionally organized into cell- and syllable-type networks within local spatial scales in HVC.
声音交流依赖于对声音感知和产生至关重要的感觉运动神经元的协同活动。这些神经元群体中的时空活动模式如何表征发声,目前仍知之甚少。在这里,我们在麻醉的成年斑胸草雀(Taeniopygia guttata)中结合了细胞内记录和双光子钙成像,以研究习得的鸟鸣及其组成音节如何在HVC内已识别的投射神经元(PNs)中得到表征,HVC是一个对声音感知和产生很重要的感觉运动区域。这些实验表明,相邻的HVC PNs对歌曲回放的反应时间可能明显不同,并且不同的音节会激活HVC局部(约100μm)区域内空间上相互交织的PNs。此外,对同一音节反应最强烈的PNs之间的噪声相关性更强,并且在PNs类别内部和之间呈空间梯度分布。这些发现支持了一种模型,即歌曲的音节和时间特征由在HVC局部空间尺度内功能上组织成细胞和音节类型网络的空间上相互交织的PNs来表征。