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行为性吸气抑制:失活和激活的呼吸细胞。

Behavioral inspiratory inhibition: inactivated and activated respiratory cells.

作者信息

Orem J

机构信息

Department of Physiology, School of Medicine, Texas Tech University Health Sciences Center, Lubbock 79430.

出版信息

J Neurophysiol. 1989 Nov;62(5):1069-78. doi: 10.1152/jn.1989.62.5.1069.

Abstract
  1. Eleven adult cats were trained to stop inspiration in response to a conditioning stimulus. The conditioning stimuli were presented at the onset of inspiration at intervals of approximately 20-30 s. Intratracheal pressures, diaphragmatic activity, and the extracellular activity of single medullary respiratory neurons were recorded while the animals performed this response. 2. Inactivation of the diaphragm to the conditioning stimuli occurred at latencies that varied from 40 to 110 ms and averaged 74 +/- 32 (SD) ms. 3. The subjects of this report are 38 inspiratory neurons that were inactivated and 19 cells that were activated when inspiration was stopped behaviorally. These cells were located in the region of n. ambiguus and the ventrolateral n. of tractus solitarius. 4. The inspiratory cells that were inactivated behaviorally had the following characteristics: 1) Most had an augmenting inspiratory profile with (n = 14) or without (n = 9) postinspiratory activity. Other types were inspiratory throughout (n = 5), decrementing inspiratory (n = 3), tonic inspiratory (n = 4), early inspiratory (n = 2), and expiratory-inspiratory (n = 1). 2) Their mean discharge rate was 39 +/- 2.7 (SE) Hz. 3) The latency of their inactivation in response to the task averaged 81 +/- 4.9 (SE) ms, and 4) Their activity corresponded closely to breathing not only during the behavioral response but also during eupnea (eta 2 = 0.62 +/- 0.04, mean +/- SE) and respiratory acts such as sneezing, sniffing, meowing, and purring. 5. The cells that were activated when inspiration was stopped behaviorally had the following characteristics. 1) As a group, they had discharge profiles related to every phase of the respiratory cycle. 2) They were recorded in the same region as, and often simultaneously with, respiratory cells that were inactivated. 3) Their activity patterns were highly variable such that the signal strength and consistency of the respiratory component of that activity were weak (eta 2 = 0.27 +/- 0.03, mean +/- SE). 4) The latency of their activation in response to the task averaged 58 +/- 2.7 (SE) ms and was significantly shorter than the latency of inactivation of the high eta 2-valued inspiratory cells. 5) This activation was intense and prolonged. 6. It is hypothesized that the activated cells integrate nonrespiratory and respiratory inputs and act to inhibit other respiratory cells during the behavioral inhibition of inspiration.
摘要
  1. 对11只成年猫进行训练,使其在受到条件刺激时停止吸气。条件刺激在吸气开始时以约20 - 30秒的间隔呈现。在动物做出这种反应时,记录气管内压力、膈肌活动以及单个延髓呼吸神经元的细胞外活动。2. 膈肌对条件刺激的失活发生在40至110毫秒不等的潜伏期,平均为74±32(标准差)毫秒。3. 本报告的研究对象是38个在行为上停止吸气时失活的吸气神经元和19个被激活的细胞。这些细胞位于疑核区域和孤束核腹外侧。4. 在行为上失活的吸气细胞具有以下特征:1)大多数具有增强的吸气波形,有(n = 14)或没有(n = 9)吸气后活动。其他类型在整个吸气过程中持续活动(n = 5)、递减吸气(n = 3)、紧张性吸气(n = 4)、早期吸气(n = 2)和呼气 - 吸气(n = 1)。2)它们的平均放电率为39±2.7(标准误)赫兹。3)它们对任务的失活潜伏期平均为81±4.9(标准误)毫秒,并且4)它们的活动不仅在行为反应期间,而且在平静呼吸(η² = 0.62±0.04,平均值±标准误)以及打喷嚏、嗅闻、喵喵叫和咕噜叫等呼吸行为期间都与呼吸密切相关。5. 在行为上停止吸气时被激活的细胞具有以下特征。1)总体而言,它们具有与呼吸周期各阶段相关的放电波形。2)它们与失活的呼吸细胞记录在同一区域,并且经常同时记录。3)它们的活动模式高度可变,以至于该活动的呼吸成分的信号强度和一致性较弱(η² = 0.27±0.03,平均值±标准误)。4)它们对任务的激活潜伏期平均为58±2.7(标准误)毫秒,并且明显短于高η²值吸气细胞的失活潜伏期。5)这种激活强烈且持久。6. 据推测,被激活的细胞整合非呼吸和呼吸输入,并在行为性吸气抑制期间起到抑制其他呼吸细胞的作用。

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