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猫脑干分离后的不同步呼吸节律及其相互作用。

Desynchronized respiratory rhythms and their interactions in cats with split brain stems.

作者信息

Eldridge F L, Paydarfar D

机构信息

Department of Medicine, University of North Carolina, Chapel Hill 27599.

出版信息

J Physiol. 1989 Mar;410:513-32. doi: 10.1113/jphysiol.1989.sp017547.

DOI:10.1113/jphysiol.1989.sp017547
PMID:2507779
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1190493/
Abstract
  1. The effects on activities and rhythms of the two opposing phrenic nerves (C5 roots) of mid-line sagittal splitting of the medulla were determined in anaesthetized or decorticate, vagotomized, paralysed and ventilated cats. 2. Splitting the medulla above the obex led to marked decreases of phrenic activity on both sides, but no desynchronization of the two phrenic rhythms occurred. Further splitting to more than 3 mm below the obex led to desynchronized phrenic rhythms in fourteen of the fifteen animals that survived the necessary surgery, although it was often necessary to increase respiratory drive by means of hypercapnia, stimulatory drugs or electrical stimulation of the mesencephalon to cause the rhythms to occur. 3. When only the brain stem had been split, the two desynchronized rhythms showed interactions that led to modulations of amplitude of phrenic bursts, both being larger when in phase than when out of phase. In addition each side modulated the rhythm of the opposite side, demonstrating a 'magnet' effect. 4. Both types of modulation were eliminated after additional splitting of the spinal cord at the level (C5-C6) of the phrenic motoneurone pools. 5. Potential explanations for the amplitude modulations include cross-over of activity from one phrenic motoneurone pool to the opposite side and cross-over from the medulla of one side to the opposite phrenic motoneurone pool at the phrenic level. 6. Since the rhythm generators were independent in our preparation and located in the split halves of the medulla and since peripheral sensory feed-back was not important in these paralysed animals, we propose that the phase modulations must be due to a corollary discharge, an afferent feed-back driven by phrenic motoneurone activity that crosses the mid-line at C5-C6, ascends to the brain and affects respiratory rhythm in the opposite medullary half.
摘要
  1. 在麻醉或去皮质、切断迷走神经、麻痹并通气的猫身上,测定了延髓中线矢状劈开对两条对侧膈神经(C5神经根)活动和节律的影响。2. 在闩上方劈开延髓导致双侧膈神经活动显著降低,但两条膈神经节律未出现不同步。进一步在闩下方劈开超过3毫米,在15只存活至完成必要手术的动物中,有14只出现了膈神经节律不同步,尽管通常需要通过高碳酸血症、刺激性药物或中脑电刺激来增加呼吸驱动,以使节律出现。3. 仅劈开脑干时,两条不同步的节律显示出相互作用,导致膈神经爆发幅度的调制,同相位时两者均比异相位时更大。此外,每一侧都调制对侧的节律,表现出“磁”效应。4. 在膈运动神经元池水平(C5 - C6)额外劈开脊髓后,两种调制类型均被消除。5. 幅度调制的潜在解释包括活动从一个膈运动神经元池交叉到对侧,以及在膈神经水平从一侧延髓交叉到对侧膈运动神经元池。6. 由于在我们的实验准备中节律发生器是独立的,且位于延髓劈开的两半中,并且由于外周感觉反馈在这些麻痹动物中并不重要,我们提出相位调制必定是由于一种伴随放电,即由膈运动神经元活动驱动的传入反馈,它在C5 - C6水平交叉中线,上升至脑并影响对侧延髓半区的呼吸节律。

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本文引用的文献

1
The Path of the Respiratory Impulse from the Bulb to the Phrenic Nuclei.呼吸冲动从延髓到膈神经核的路径。
J Physiol. 1895 Apr 6;17(6):455-85. doi: 10.1113/jphysiol.1895.sp000553.
2
Notes on mechanism of rhythmic respiration.节律性呼吸机制的笔记
J Neurophysiol. 1960 Jan;23:14-26. doi: 10.1152/jn.1960.23.1.14.
3
Generation of spontaneous respiratory rhythm in high spinal cats.高位脊髓猫自主呼吸节律的产生
Brain Res. 1980 Nov 24;202(1):51-63.
4
Where are the real respiratory neurons?真正的呼吸神经元在哪里?
Fed Proc. 1981 Jul;40(9):2389-94.
5
Phrenic motoneurone activity in split-brainstem cats and monkeys.裂脑猫和猴子的膈运动神经元活动
Respir Physiol. 1982 Oct;50(1):51-61. doi: 10.1016/0034-5687(82)90006-8.
6
The significance of species differences in respiratory neurophysiology-the split-brainstem preparation.呼吸神经生理学中物种差异的意义——脑干横断制备。
Experientia. 1982 Jul 15;38(7):826-7. doi: 10.1007/BF01972295.
7
Input-output relationships of central neural circuits involved in respiration in cats.猫呼吸中枢神经回路的输入-输出关系
J Physiol. 1981 Feb;311:81-95. doi: 10.1113/jphysiol.1981.sp013574.
8
Axonal projections from the rostral expiratory neurones of the Bötzinger complex to medulla and spinal cord in the cat.猫中脑桥尾侧网状核呼气神经元向延髓和脊髓的轴突投射。
J Physiol. 1984 May;350:487-96. doi: 10.1113/jphysiol.1984.sp015214.
9
The ultrastructure and synaptic architecture of phrenic motor neurons in the spinal cord of the adult rat.成年大鼠脊髓中膈运动神经元的超微结构和突触结构
J Neurocytol. 1984 Feb;13(1):85-109. doi: 10.1007/BF01148320.
10
Morphology of cat phrenic motoneurons as revealed by intracellular injection of horseradish peroxidase.辣根过氧化物酶细胞内注射显示的猫膈运动神经元形态学
J Comp Neurol. 1983 Sep 1;219(1):70-80. doi: 10.1002/cne.902190107.