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本文引用的文献

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Synaptic activation of hypoglossal respiratory motorneurons during inspiration in rats.
Neurosci Lett. 2002 Nov 8;332(3):195-9. doi: 10.1016/s0304-3940(02)00957-6.
2
Anatomical arrangement of hypercapnia-activated cells in the superficial ventral medulla of rats.大鼠延髓腹外侧浅表区高碳酸血症激活细胞的解剖学分布
J Appl Physiol (1985). 2002 Aug;93(2):427-39. doi: 10.1152/japplphysiol.00620.2000.
3
Respiratory pre-motor control of hypoglossal motoneurons in the rat.大鼠舌下运动神经元的呼吸前运动控制
Neuroscience. 2002;110(4):711-22. doi: 10.1016/s0306-4522(01)00594-2.
4
Bilateral coordination of inspiratory neurones in the rat.
Pflugers Arch. 2002 Mar;443(5-6):829-35. doi: 10.1007/s00424-001-0752-2. Epub 2001 Dec 7.
5
Central chemosensitivity, sleep, and wakefulness.中枢化学敏感性、睡眠与觉醒
Respir Physiol. 2001 Dec;129(1-2):257-68. doi: 10.1016/s0034-5687(01)00295-x.
6
Chemosensitivity of serotonergic neurons in the rostral ventral medulla.延髓头端腹内侧5-羟色胺能神经元的化学敏感性
Respir Physiol. 2001 Dec;129(1-2):175-89. doi: 10.1016/s0034-5687(01)00289-4.
7
Optical recording of spontaneous respiratory neuron activity in the rat brain stem.大鼠脑干中自发性呼吸神经元活动的光学记录。
Jpn J Physiol. 2001 Oct;51(5):613-9. doi: 10.2170/jjphysiol.51.613.
8
Effects of common excitatory and inhibitory inputs on motoneuron synchronization.常见兴奋性和抑制性输入对运动神经元同步性的影响。
J Neurophysiol. 2001 Dec;86(6):2807-22. doi: 10.1152/jn.2001.86.6.2807.
9
Bilateral synchronisation of respiratory motor output in rats: adult versus neonatal in vitro preparations.大鼠呼吸运动输出的双侧同步:成年与新生体外制备物
Pflugers Arch. 2001 Sep;442(6):943-51. doi: 10.1007/s004240100621.
10
Studying rhythmogenesis of breathing: comparison of in vivo and in vitro models.呼吸节律发生的研究:体内和体外模型的比较
Trends Neurosci. 2001 Aug;24(8):464-72. doi: 10.1016/s0166-2236(00)01867-1.

用互相关分析研究新生大鼠横断延髓切片中呼吸神经元之间的联系。

Connections between respiratory neurones in the neonatal rat transverse medullary slice studied with cross-correlation.

作者信息

Li Yan Mei, Shen Linlin, Peever John H, Duffin James

机构信息

Department of Physiology, University of Toronto, ON, Canada.

出版信息

J Physiol. 2003 May 15;549(Pt 1):327-32. doi: 10.1113/jphysiol.2003.040204. Epub 2003 Apr 11.

DOI:10.1113/jphysiol.2003.040204
PMID:12692183
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2342932/
Abstract

In the transverse medullary slice prepared from neonatal rats the hypoglossal nerve rootlets exhibit a bursting 'respiratory' rhythm as do neurones in the pre-Bötzinger complex (PBC). We used cross-correlation analysis of the rhythmic multiunit discharges recorded from hypoglossal nerve rootlets, hypoglossal nucleus neurones and PBC neurones to investigate the connections between these groups. All cross-correlograms computed between left and right hypoglossal nerves, and between hypoglossal neurones and contralateral hypoglossal nerves, displayed central peaks with broad half-amplitude widths (mean +/- S.D. of 29.6 +/- 10.4 and 37.3 +/- 6.0 ms, respectively), which we interpreted as evidence for activation from a common source. Five of the 18 cross-correlograms computed between left and right PBC neurones displayed peaks either side of time zero with narrower half-amplitude widths (mean +/- S.D. of 9.3 +/- 1.9 ms) superimposed on broader central peaks, which we interpreted as evidence for mutual excitation and common activation, respectively. Cross-correlograms computed between PBC neurones and contralateral hypoglossal neurones or nerves did not display consistent features, but some of those computed between PBC and ipsilateral hypoglossal neurones (two of eight) or nerves (two of five) displayed peaks with broad half-amplitude widths (mean +/- S.D. of 36.8 +/- 6.9 ms), offset from time zero by 6 ms (except for one at 18 ms), which we interpreted as evidence for excitation of hypoglossal neurones and motoneurones by PBC neurones. We concluded that rhythm is synchronised between left and right sides by mutual excitatory connections between left and right PBC neurones. The rhythm is transmitted to ipsilateral hypoglossal neurones by a paucisynaptic pathway. Both hypoglossal neurones and PBC neurones receive a common activation from as yet unidentified sources.

摘要

在新生大鼠制备的横断延髓切片中,舌下神经根丝表现出爆发性的“呼吸”节律,前包钦格复合体(PBC)中的神经元也是如此。我们使用对舌下神经根丝、舌下神经核神经元和PBC神经元记录的节律性多单位放电进行互相关分析,来研究这些组之间的联系。在左右舌下神经之间,以及舌下神经元与对侧舌下神经之间计算的所有互相关图,都显示出具有宽半峰宽度的中心峰值(分别为29.6±10.4和37.3±6.0毫秒的平均值±标准差),我们将其解释为来自共同源激活的证据。在左右PBC神经元之间计算的18个互相关图中有5个在时间零点两侧显示出峰值,半峰宽度较窄(平均值±标准差为9.3±1.9毫秒),叠加在较宽的中心峰值上,我们分别将其解释为相互兴奋和共同激活的证据。在PBC神经元与对侧舌下神经元或神经之间计算的互相关图没有显示出一致的特征,但在PBC与同侧舌下神经元(8个中的2个)或神经(5个中的2个)之间计算的一些互相关图显示出具有宽半峰宽度的峰值(平均值±标准差为36.8±6.9毫秒),相对于时间零点偏移6毫秒(除了一个在18毫秒处),我们将其解释为PBC神经元对舌下神经元和运动神经元兴奋的证据。我们得出结论,左右PBC神经元之间的相互兴奋性连接使左右两侧的节律同步。该节律通过少突触通路传递到同侧舌下神经元。舌下神经元和PBC神经元都从尚未确定的来源接受共同激活。