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气管牵张感受器的转导特性。

Transduction properties of tracheal stretch receptors.

作者信息

Bartlett D, Sant'ambrogio G, Wise J C

出版信息

J Physiol. 1976 Jun;258(2):421-32. doi: 10.1113/jphysiol.1976.sp011428.

Abstract
  1. Using single fibre vagal afferent recording, we have studied the behavior of slowly adapting stretch receptors located in an isolated, in situ, segment of the trachea in dogs. Responses to positive and negative steady and oscillating transmural pressures were investigated. 2. Seventy-eight per cent of the receptors studied were tonically active at resting tracheal volume. Ninety per cent showed a more pronounced response to positive than to negative transmural pressures. 3. During pressure oscillations the majority of the receptors had a higher discharge frequency at any given pressure during the ascending phase of the pressure wave than at the same pressure under static conditions. During most of the ensuing descent of pressure toward zero the discharge frequency led transmural pressure. 4. With increasing frequency of oscillation the differences from the static responses increased (dP/dt sensitivity), especially during the ascending limb of the pressure oscillation (rectifying behavior). 5. In a small number of receptors, discharge frequency lagged behind transmural pressure or was in phase with it ("no loop" pattern). 6. In three cases the same receptor exhibited dP/dt sensitivity during positive pressure oscillations, whereas discharge frequency lagged behind pressure during negative pressure oscillations. This indicates that the lack of dP/dt sensitivity exhibited under negative pressure conditions does not represent an intrinsic property of these receptors, but reflects some aspect of their mechanical arrangement within the airway wall. 7. THESE PATTERNS OF RESPONSE ARE DISCUSSed in terms of intrinsic and extrinsic characteristics of the receptors. 8. The physiological implications of stretch receptor behaviour are also considered.
摘要
  1. 我们采用单纤维迷走神经传入记录法,研究了犬离体原位气管节段中慢适应性牵张感受器的行为。研究了感受器对正、负向稳定及振荡跨壁压的反应。2. 所研究的感受器中有78%在气管静息容积时呈紧张性活动。90%的感受器对正向跨壁压的反应比对负向跨壁压的反应更明显。3. 在压力振荡期间,大多数感受器在压力波上升相的任何给定压力下的放电频率高于静态条件下相同压力时的放电频率。在随后压力降至零的大部分过程中,放电频率领先于跨壁压。4. 随着振荡频率增加,与静态反应的差异增大(dP/dt敏感性),尤其是在压力振荡的上升支期间(整流行为)。5. 在少数感受器中,放电频率落后于跨壁压或与之同相(“无环路”模式)。6. 在3例中,同一感受器在正压振荡期间表现出dP/dt敏感性,而在负压振荡期间放电频率落后于压力。这表明在负压条件下缺乏dP/dt敏感性并非这些感受器的固有特性,而是反映了它们在气道壁内的机械排列的某些方面。7. 根据感受器的内在和外在特征讨论了这些反应模式。8. 还考虑了牵张感受器行为的生理意义。

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