Tarras-Wahlberg S, Rekling J C
Department of Neuroscience and Pharmacology, Copenhagen University, Panum Institute 18.6 Blegdamsvej 3 DK-2200, Copenhagen N., Denmark.
Neuroscience. 2009 Jun 16;161(1):259-68. doi: 10.1016/j.neuroscience.2009.02.064. Epub 2009 Mar 9.
Respiratory motor output in bilateral cranial nerves is synchronized, but the underlying synchronizing mechanisms are not clear. We used an in vitro slice preparation from newborn mice to investigate the effect of systematic transsections on respiratory activity in bilateral XII nerves. Complete transsection at the midline resulted in desynchronized rhythm with reduced XII burst amplitude and duration. Transsections in the ventral or dorsal 1/3 of the midline did not desynchronize rhythm. However, transsections in the ventral 2/3 of the midline desynchronized rhythm with characteristic amplitude correlations, where large-amplitude XII-bursts on one side was synchronized with small-amplitude XII-burst on the contralateral side. These characteristic amplitude correlations suggest that hypoglossal motoneurons receive respiratory drive from bilateral sources. Retrograde labeling confirmed that commissural fibers from the pre-Bötzinger complex cross in the mid-1/3 of the midline, and that dendrites of hypoglossal motoneurons project into the contralateral XII nucleus. In conclusion, commissural fibers crossing in the mid-1/3 of the midline are required for synchronization of respiratory activity in bilateral XII nerves. Hypoglossal motoneurons receive respiratory drive from both sides of the medulla, possibly mediated by contralaterally projecting dendrites.
双侧脑神经中的呼吸运动输出是同步的,但其潜在的同步机制尚不清楚。我们使用新生小鼠的体外脑片制备来研究系统性横切对双侧舌下神经呼吸活动的影响。在中线处完全横切导致节律不同步,舌下神经爆发的幅度和持续时间减小。在中线腹侧或背侧1/3处横切并未使节律不同步。然而,在中线腹侧2/3处横切使节律不同步,并具有特征性的幅度相关性,即一侧的大幅度舌下神经爆发与对侧的小幅度舌下神经爆发同步。这些特征性的幅度相关性表明舌下运动神经元从双侧来源接受呼吸驱动。逆行标记证实,来自前包钦格复合体的连合纤维在中线的中1/3处交叉,并且舌下运动神经元的树突投射到对侧舌下神经核。总之,在中线中1/3处交叉的连合纤维是双侧舌下神经呼吸活动同步所必需的。舌下运动神经元从延髓两侧接受呼吸驱动,可能由对侧投射的树突介导。