Related Experiment Video
Updated: Sep 24, 2025

Manufacturing and Using Piggy-back Multibarrel Electrodes for In vivo Pharmacological Manipulations of Neural Responses
Published on: January 18, 2013
Bilateral Interactions in the Mouse Dorsal Inferior Colliculus Enhance the Ipsilateral Neuronal Responses and
Yun Liu1, Yan Li1, Yunyi Peng1
1Department of Physiology, School of Basic Medical Sciences, Southern Medical University, Guangzhou, China.
Insights
The dorsal nucleus of the inferior colliculus (ICD) plays a key role in binaural hearing integration. Unilateral ICD silencing affects contralateral ICD neuron responses, suggesting a role in modulating auditory processing.
Area of Science:
- Neuroscience
- Auditory Neuroscience
- Computational Neuroscience
Background:
- The inferior colliculus (IC) is vital for binaural auditory processing.
- Research has primarily focused on the central nucleus (ICC), with limited understanding of the dorsal nucleus (ICD).
Purpose of the Study:
- To investigate neuronal response characteristics in the mouse ICD.
- To compare ICD and ICC neuronal responses under binaural and monaural conditions.
- To elucidate the role of the ICD in binaural hearing integration.
Main Methods:
- In vivo loose-patch recordings to characterize ICD neuronal responses.
- Retrograde virus tracing to map inter-ICD connectivity.
- Unilateral ICD silencing using lidocaine.
- Whole-cell recording and optogenetics to study synaptic mechanisms.
Main Results:
- ICD neurons show stronger ipsilateral responses and better binaural summation than ICC neurons.
- Unilateral ICD silencing reduced responses in contralateral ICD neurons, particularly to ipsilateral stimuli.
- The ICD exhibits both excitatory and inhibitory projections to the contralateral ICD.
Conclusions:
- The ICD is crucial for binaural hearing integration.
- Interactions between bilateral ICDs modulate auditory responses.
- The contralateral ICD may influence ipsilateral responses and overall binaural hearing.
Abstract:
The inferior colliculus (IC) is a critical centre for the binaural processing of auditory information. However, previous studies have mainly focused on the central nucleus of the inferior colliculus (ICC), and less is known about the dorsal nucleus of the inferior colliculus (ICD). Here, we first examined the characteristics of the neuronal responses in the mouse ICD and compared them with those in the inferior colliculus under binaural and monaural conditions using in vivo loose-patch recordings. ICD neurons exhibited stronger responses to ipsilateral sound stimulation and better binaural summation than those of ICC neurons, which indicated a role for the ICD in binaural hearing integration. According to the abundant interactions between bilateral ICDs detected using retrograde virus tracing, we further studied the effect of unilateral ICD silencing on the contralateral ICD. After lidocaine was applied, the responses of some ICD neurons (13/26), especially those to ipsilateral auditory stimuli, decreased. Using whole-cell recording and optogenetic methods, we investigated the underlying neuronal circuits and synaptic mechanisms of binaural auditory information processing in the ICD. The unilateral ICD provides both excitatory and inhibitory projections to the opposite ICD, and the advantaged excitatory inputs may be responsible for the enhanced ipsilateral responses and binaural summation of ICD neurons. Based on these results, the contralateral ICD might modulate the ipsilateral responses of the neurons and binaural hearing.
More Related Videos
11:19Extracellular Recording of Neuronal Activity Combined with Microiontophoretic Application of Neuroactive Substances in Awake Mice
Published on: May 21, 2016
07:04Long-range Channelrhodopsin-assisted Circuit Mapping of Inferior Colliculus Neurons with Blue and Red-shifted Channelrhodopsins
Published on: February 7, 2020
Related Concept Videos
The Cochlea
Auditory Pathway
When viewed cross-sectionally, the cochlea reveals the scala vestibuli and scala tympani flanking...
Auditory Perception
Hair Cells