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气味刺激的时间不会改变自由呼吸大鼠嗅球单位活动的模式。

Timing of odor stimulation does not alter patterning of olfactory bulb unit activity in freely breathing rats.

作者信息

Sobel E C, Tank D W

机构信息

Biological Computation Research Department, AT&T Bell Laboratories, Murray Hill, New Jersey 07974.

出版信息

J Neurophysiol. 1993 Apr;69(4):1331-7. doi: 10.1152/jn.1993.69.4.1331.

DOI:10.1152/jn.1993.69.4.1331
PMID:8492167
Abstract
  1. The effect of the timing between nasal airflow and ongoing tracheal respiration on single-unit activity in the olfactory bulb (OB) of the rat was examined. Nasal and tracheal breathing were dissociated with the use of a double tracheal cannulation technique that allowed independent control of nasal airflow and control of the synchronization of nasal airflow and tracheal breathing. 2. When amyl acetate-saturated air was presented to the nose, OB units showed a distinct reorganization of activity known as respiratory patterning. Of 43 cells examined, 29 fired maximally after inspiration, and 14 fired maximally after expiration. In all 43 cells the patterning of OB activity was synchronized with the time course of the nasal stimulation. This synchronization was independent of the point in the ongoing respiratory cycle (tracheal breathing) at which the odor stimulation was applied. 3. Patterning of OB single-unit activity was also observed when odor was applied as a series of "inspirations" without intervening expirations. Patterning was observed to follow the time course of the odor stimulation even when this was considerably longer and slower than normal breathing. No patterning of activity was observed during continuous odor stimulation or in the absence of odor stimulation. 4. It is concluded that respiratory patterning of OB single-unit activity in the rat is not directly dependent on centrifugal inputs synchronized to respiration. Rather, the observed pattern of neural activity reflects the phasic stimulation of the olfactory receptors with each inspiration and the dynamics of the circuitry intrinsic to the bulb itself.
摘要
  1. 研究了大鼠嗅球(OB)中鼻气流与持续气管呼吸之间的时间间隔对单单位活动的影响。使用双气管插管技术分离鼻呼吸和气管呼吸,该技术允许独立控制鼻气流以及控制鼻气流与气管呼吸的同步性。2. 当将乙酸戊酯饱和空气输送至鼻腔时,OB单位显示出一种称为呼吸模式化的明显活动重组。在检查的43个细胞中,29个在吸气后放电达到最大值,14个在呼气后放电达到最大值。在所有43个细胞中,OB活动的模式化与鼻刺激的时间进程同步。这种同步与施加气味刺激时正在进行的呼吸周期(气管呼吸)中的时间点无关。3. 当以一系列“吸气”形式施加气味且无中间呼气时,也观察到了OB单单位活动的模式化。即使气味刺激的时间进程比正常呼吸长得多且慢得多,也观察到模式化跟随气味刺激的时间进程。在持续气味刺激期间或无气味刺激时未观察到活动模式化。4. 得出的结论是,大鼠OB单单位活动的呼吸模式化并不直接依赖于与呼吸同步的离心输入。相反,观察到的神经活动模式反映了每次吸气时嗅觉感受器的阶段性刺激以及嗅球本身内在回路的动态变化。

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