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吸气性阻力负荷和呼吸相关诱发电位的检测阈值。

Detection threshold for inspiratory resistive loads and respiratory-related evoked potentials.

作者信息

Davenport Paul W, Chan Pei-Ying Sarah, Zhang Weirong, Chou Yang-Ling

机构信息

Department of Physiological Sciences, Box 100144, HSC, University of Florida, Gainesville, FL 32610, USA.

出版信息

J Appl Physiol (1985). 2007 Jan;102(1):276-85. doi: 10.1152/japplphysiol.01436.2005. Epub 2006 Sep 28.

Abstract

The relationship between detection threshold of inspiratory resistive loads and the peaks of the respiratory-related evoked potential (RREP) is unknown. It was hypothesized that the short-latency and long-latency peaks of the RREP would only be elicited by inspiratory loads that exceeded the detection threshold. The detection threshold for inspiratory resistive loads was measured in healthy subjects with inspiratory-interruption or onset load presentations. In a separate protocol, the RREPs were recorded with resistive loads that spanned the detection threshold. The loads were presented in stimulus attend and ignore sessions. Onset and interruption load presentations had the same resistive load detection threshold. The P(1), N(f), and N(1) peaks of the RREP were observed with loads that exceeded the detection threshold in both attend and ignore conditions. The P(300) was present with loads that exceeded the detection threshold only in the attend condition. No RREP components were elicited with subthreshold loads. The P(1), N(f), and P(300) amplitudes varied with resistive load magnitude. The results support the hypothesis that there is a resistive load threshold for eliciting the RREPs. The amplitude of the RREP peaks vary as a function of load magnitude. The cognitive P(300) RREP peak is present only for detectable loads and when the subject attends to the stimulus. The absence of the RREP with loads below the detection threshold and the presence of the RREP elicited by suprathreshold loads are consistent with the gating of these neural measures of respiratory mechanosensory information processing.

摘要

吸气阻力负荷检测阈值与呼吸相关诱发电位(RREP)峰值之间的关系尚不清楚。研究假设,RREP的短潜伏期和长潜伏期峰值仅由超过检测阈值的吸气负荷引发。采用吸气中断或起始负荷呈现方式,测量健康受试者的吸气阻力负荷检测阈值。在另一个方案中,记录跨越检测阈值的阻力负荷下的RREP。负荷在刺激关注和忽视环节中呈现。起始和中断负荷呈现方式具有相同的阻力负荷检测阈值。在关注和忽视两种条件下,当负荷超过检测阈值时,均观察到RREP的P(1)、N(f)和N(1)峰值。仅在关注条件下,当负荷超过检测阈值时,出现P(300)。阈下负荷未引出RREP成分。P(1)、N(f)和P(300)波幅随阻力负荷大小而变化。结果支持以下假设:引发RREP存在阻力负荷阈值。RREP峰值的波幅随负荷大小而变化。认知性P(300) RREP峰值仅在可检测负荷且受试者关注刺激时出现。低于检测阈值的负荷未引出RREP,而阈上负荷引出RREP,这与这些呼吸机械感觉信息处理的神经测量的门控作用一致。

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