Matunis Ashley, Iwamoto Ryotaro, Stacy Emma, Abe Kenta, Tamura Shunki, Kambe Yuki, Itokazu Takahide, Hikida Takatoshi, Sato Tatsuo, Sato Takashi
bioRxiv. 2025 Jun 6:2025.06.03.657656. doi: 10.1101/2025.06.03.657656.
Somatotopy serves as a fundamental principle underlying sensory information processing, traditionally emphasized in the study of the cerebral cortex. However, little effort has been directed towards unraveling the spatial organization characterizing the earlier stages of sensory pathways. In this study, we developed a novel methodology to visualize individual neurons within the trigeminal ganglion-a crucial cluster of cell bodies of sensory neurons innervating the face. Our investigations revealed a reliable sensory response to stimulation of the lower teeth or lip within this ganglion. The responsive neurons were confined to a specific portion of the trigeminal ganglion, consistent with innervation of the lower oral cavity by the mandibular nerve. Contrary to our expectations, we did not observe a discernible map delineating specific regions of the oral cavity. Instead, the spatial representation of the teeth and lips exhibited unexpected intermingling. These findings challenge conventional understandings rooted in cortical maps and suggest that such conceptual frameworks may not be applicable to earlier stages of sensory pathways for the oral cavity. Our study sheds light on the complex spatial organization of sensory processing in the trigeminal system, highlighting the need for further research to elucidate the underlying mechanisms and implications for sensory perception and clinical interventions.
calcium imaging revealed that neurons responding to tooth stimulation are sparsely distributed in the trigeminal ganglion, intermixed with neurons responding to lip stimulation.
躯体感觉定位是感觉信息处理的基本原则,传统上在大脑皮层研究中受到重视。然而,对于揭示感觉通路早期阶段的空间组织,人们投入的精力较少。在本研究中,我们开发了一种新颖的方法来可视化三叉神经节内的单个神经元,三叉神经节是支配面部的感觉神经元细胞体的关键集群。我们的研究揭示了该神经节对下牙或下唇刺激的可靠感觉反应。反应性神经元局限于三叉神经节的特定部分,这与下颌神经对下口腔的支配一致。与我们的预期相反,我们没有观察到描绘口腔特定区域的可辨别的图谱。相反,牙齿和嘴唇的空间表征呈现出意想不到的相互交织。这些发现挑战了基于皮层图谱的传统理解,并表明此类概念框架可能不适用于口腔感觉通路的早期阶段。我们的研究揭示了三叉神经系统中感觉处理的复杂空间组织,强调需要进一步研究以阐明其潜在机制以及对感觉感知和临床干预的影响。
钙成像显示,对牙齿刺激有反应的神经元在三叉神经节中分布稀疏,与对嘴唇刺激有反应的神经元相互交织。