首页> 美国卫生研究院文献>The Journal of Physiology >Projection of pulmonary rapidly adapting receptors to the medulla of the cat: an antidromic mapping study.
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Projection of pulmonary rapidly adapting receptors to the medulla of the cat: an antidromic mapping study.

机译:肺快速适应性受体投射到猫的髓质:一项抗皮肤作图研究。

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摘要

The activity of pulmonary rapidly adapting receptor (r.a.r.) neurones was recorded extracellularly in the nodose ganglion of the decerebrate cat. The receptors were identified by their rapid adaptation to 'ramp and hold' hyperinflations of the lung. The antidromic mapping technique was used to determine the sites of projection and branching patterns within the nucleus of the tractus solitarius (n.t.s.) of eleven r.a.r.s. The medulla was explored with a stimulating electrode to activate the r.a.r.s. antidromically. In each penetration, depth-threshold measurements were made for each antidromic response characterized by a distinct latency. Using the anatomical sites of the minimum threshold points, the locations of central branches of individual r.a.r.s. were determined. The main axons of all of them coursed within the tractus solitarius (t.s.) at levels from 2 mm rostral to 0.5 mm caudal to the obex. The axonal conduction velocities within the t.s. were 6.2-9.7 m/s, where the peripheral conduction velocities were 11.2-20.4 m/s (28 degrees C). Different latencies of response evoked in a single penetration were considered to indicate branching. The densest branching was found in the ipsilateral commissural subnucleus of the n.t.s. at levels 0.3-1.3 mm caudal to the obex and, to a lesser degree, in the contralateral commissural subnucleus. All r.a.r.s. sent a few branches to the medial n.t.s. rostral to the obex. Four r.a.r.s. ramified in the ventrolateral n.t.s. where inspiratory cells are located. Depth-threshold graphs were interpolated by best fitting parabolic equations: Ith = Ad2 + Bd + C; where Ith is the threshold current, d the corresponding depth of stimulation, and A, B and C are coefficients. Coefficient A is a measure of steepness of the parabola. The A coefficients were inversely related to the conduction velocity (v) of the stimulated branch. An analysis of the data from the present study (v = 5.0-9.7 m/s) combined with data from the literature (v = 2.2-85 m/s) led to a simple relationship between the A coefficient and the conduction velocity of the stimulated fibre: A = 6500/v, where A is expressed in microA/mm2 and v is expressed in m/s. Within the range 3-35 m/s, the formula is useful in predicting the effective current spread when the conduction velocity is known, or to estimate the conduction velocity from the shape of a depth-threshold curve. Two slowly adapting pulmonary stretch receptors (p.s.r.s) were studied.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:肺快速适应性受体(r.a.r.)神经元的活动记录在去脑猫的结节神经节的细胞外。受体通过快速适应肺部“过度倾斜”而得到鉴定。逆向映射技术用于确定11个r.a.r.s.的孤束(n.t.s.)核内投影和分支模式的位置。用刺激电极探查髓质以激活r.a.r.s.对抗地在每次穿透中,针对每个以明显延迟为特征的抗病反应进行深度阈值测量。使用最小阈值点的解剖部位,可以确定单个r.a.r.s的中央分支的位置。被确定。它们的主要轴突都在孤束(t.s.)内行进,从喙的2 mm到尾部的尾部的0.5 mm。 t.s.内的轴突传导速度速度为6.2-9.7 m / s,周围的传导速度为11.2-20.4 m / s(28摄氏度)。一次渗透引起的不同反应潜伏期被认为表明了分支。在n.t.s的同侧连合亚核中发现最密集的分支。在尾鳍尾部0.3-1.3 mm,对侧连合亚核水平较小。所有r.a.r.s.派了几个分支到中间国家对肥胖者有延髓。四个r.a.r.s.在腹侧n.t.s.吸气细胞所在的位置。深度阈值图通过最佳拟合抛物线方程进行插值:Ith = Ad2 + Bd + C;其中Ith是阈值电流,d是相应的刺激深度,A,B和C是系数。系数A是抛物线陡度的度量。 A系数与受激分支的传导速度(v)成反比。对本研究数据(v = 5.0-9.7 m / s)的分析与文献数据(v = 2.2-85 m / s)的结合,得出A系数与导体传导速度之间的简单关系。刺激光纤:A = 6500 / v,其中A以microA / mm2表示,v以m / s表示。在3-35 m / s的范围内,该公式可用于在已知传导速度的情况下预测有效电流散布,或从深度阈值曲线的形状评估传导速度。研究了两种缓慢适应的肺拉伸受体(p.s.r.s)。(摘要截短为400字)

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