首页> 外文期刊>The Journal of Physiology >Complex and spatially segregated auditory inputs of the mouse superior colliculus
【24h】

Complex and spatially segregated auditory inputs of the mouse superior colliculus

机译:鼠标优越小集的复杂和空间隔离听觉输入

获取原文
获取原文并翻译 | 示例
           

摘要

Key points Although the visual circuits in the superior colliculus (SC) have been thoroughly examined, the auditory circuits lack equivalent scrutiny. SC neurons receiving auditory inputs in mice were characterized and three distinguishable types of neurons were found. The auditory pathways from external nuclei of the inferior colliculus (IC) were characterized, and a novel direct inhibitory connection and an excitation that drives feed‐forward inhibitory circuits within the SC were found. The direct excitatory and inhibitory inputs exhibited distinct arbourization patterns in the SC. These findings suggest functional differences between excitatory and inhibitory sensory information that targets the auditory SC. Abstract The superior colliculus (SC) is a midbrain structure that integrates auditory, somatosensory and visual inputs to drive orientation movements. While much is known about how visual information is processed in the superficial layers of the SC, little is known about the SC circuits in the deep layers that process auditory inputs. We therefore characterized intrinsic neuronal properties in the auditory‐recipient layer of the SC (stratum griseum profundum; SGP) and confirmed three electrophysiologically defined clusters of neurons, consistent with literature from other SC layers. To determine the types of inputs to the SGP, we expressed Channelrhodopsin‐2 in the nucleus of the brachium of the inferior colliculus (nBIC) and external cortex of the inferior colliculus (ECIC) and optically stimulated these pathways while recording from SGP neurons. Probing the connections in this manner, we described a monosynaptic excitation that additionally drives feed‐forward inhibition via circuits intrinsic to the SC. Moreover, we found a profound long‐range monosynaptic inhibition in 100% of recorded SGP neurons, a surprising finding considering that only about 15% of SGP‐projecting neurons in the nBIC/ECIC are inhibitory. Furthermore, we found spatial differences in the cell body locations as well as axon trajectories between the monosynaptic excitatory and inhibitory inputs, suggesting that these inputs may be functionally distinct. Taking this together with recent anatomical evidence suggesting an auditory excitation from the nBIC and a GABAergic multimodal inhibition from the ECIC, we propose that sensory integration in the SGP is more multifaceted than previously thought.
机译:关键点虽然高级小集(SC)的视觉电路已经彻底检查,但听觉电路缺乏相当于审查。 SC神经元接受小鼠的听觉输入的特征在于,并发现了三种可区分的神经元。从劣质小集体(IC)的外部核的听觉途径的特征在于,发现了一种新的直接抑制连接和驱动SC内前馈抑制电路的激励。直接兴奋性和抑制输入在SC中表现出明显的酵素模式。这些调查结果表明了针对听觉SC的兴奋性和抑制性信息之间的功能差异。摘要卓越的小集(SC)是一种中脑结构,可集成听觉,躯体感觉和视觉输入以驱动方向运动。虽然关于如何在SC的浅层层处理视觉信息的情况下了解非常多,但关于处理听觉输入的深层中的SC电路很少。因此,我们在SC的听觉接受者层中表征了内在的神经元特性(地层Griseum; SGP; SGP)并确认了三种电生理学定义的神经元簇,与来自其他SC层的文献一致。为了确定SGP的输入类型,在从SGP神经元记录的同时,我们在劣质粒子(NBIC)和劣质呋喃(ECIC)的核中表达频道的频道 - 在嗜铬呋喃(ECIC)的外部皮层中。以这种方式探测连接,我们描述了一种单突触激发,其另外通过固定到SC的电路驱动前馈抑制。此外,我们发现100%的记录的SGP神经元中的深度远程单突触抑制,令人惊讶的发现考虑到NBIC / ECIC中仅约15%的SGP突出的神经元是抑制作用。此外,我们发现细胞体位置的空间差异以及单腹兴奋性和抑制输入之间的轴突轨迹,表明这些输入可以在功能上独特。与近期解剖证据一起占据了来自ECIC的NBIC和Gabaergic的多峰抑制的听觉激发,我们提出了SGP中的感官集成比以前认为的更多程度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号