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气道机械感受器

Airway mechanosensors.

作者信息

Yu Jerry

机构信息

Department of Pulmonary Medicine, Ambulatory Care Building, 3rd Floor, University of Louisville, Louisville, KY 40292, USA.

出版信息

Respir Physiol Neurobiol. 2005 Oct 12;148(3):217-43. doi: 10.1016/j.resp.2004.12.007. Epub 2005 Jan 23.

Abstract

A mechanosensory unit is a functional unit that contains multiple receptors (or encoders) with different characteristics, including rapidly adapting receptors, slowly adapting receptors, and deflation-activated-receptors. Each is capable of sensing different aspects of lung mechanics. The sensory unit is both a transducer and a processor. Significant information integration occurs at the intra-encoder and inter-encoder levels. Within an encoder, the information is encoded as analog signals and integrated by amplitude modulation. Information from each single stretch-activated channel is processed through several levels of temporal and spatial summation, producing a generator potential that encodes averaged overall information within the encoder. This analog signal is transformed into a digital signal in the form of action potentials that are encoded as frequency (frequency modulation). These all-or-none propagated action potentials from different encoders interact through a competitive selection mechanism. Such inter-encoder interaction may occur at several levels, because of the fractal nature of the sensory unit. Inter-encoder interaction retains representative information but eliminates redundant information, resulting in the final output to the central nervous system, where multiple decoders specific for different variables decipher the encoded information for further processing.

摘要

一个机械感觉单元是一个功能单元,它包含多个具有不同特性的感受器(或编码器),包括快速适应感受器、缓慢适应感受器和放气激活感受器。每个感受器都能够感知肺力学的不同方面。感觉单元既是一个换能器,也是一个处理器。重要的信息整合发生在编码器内部和编码器之间的层面。在一个编码器内,信息被编码为模拟信号,并通过幅度调制进行整合。来自每个单个牵张激活通道的信息通过几个层面的时间和空间总和进行处理,产生一个发生器电位,该电位对编码器内的平均总体信息进行编码。这个模拟信号被转换为动作电位形式的数字信号,动作电位被编码为频率(频率调制)。来自不同编码器的这些全或无传播的动作电位通过竞争选择机制相互作用。由于感觉单元的分形性质,这种编码器间的相互作用可能在几个层面发生。编码器间的相互作用保留代表性信息但消除冗余信息,从而产生最终输出到中枢神经系统,在那里针对不同变量的多个解码器解读编码信息以进行进一步处理。

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