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傅里叶变换分析兔逼尿肌自主收缩揭示了在较长长度时,张力和慢波发展与长度相关的增加。

Fourier transform analysis of rabbit detrusor autonomous contractions reveals length dependent increases in tone and slow wave development at long lengths.

机构信息

Division of Urology, Department of Surgery, School of Medicine, Virginia Commonwealth University, Richmond, Virginia 23298-0118, USA.

出版信息

J Urol. 2013 Jul;190(1):334-40. doi: 10.1016/j.juro.2013.02.071. Epub 2013 Feb 26.

Abstract

PURPOSE

Bladder wall muscle (detrusor) develops low amplitude rhythmic contractions. Low amplitude rhythmic contraction activity is increased in detrusor from patients with overactive bladder. In this in vitro study we used fast Fourier transforms to assess the length dependence of low amplitude rhythmic contraction components.

MATERIALS AND METHODS

Rabbit detrusor strips were placed in a muscle bath between 2 clips to adjust length and record isometric tension. Tissues stretched from 70% to 130% of a reference muscle length at 10% increments were allowed to develop low amplitude rhythmic contractions at each length for 20 minutes. Low amplitude rhythmic contraction data were analyzed using fast Fourier transforms and represented by a frequency rather than a time spectrum.

RESULTS

Based on fast Fourier transform analysis summarized by signal peaks within specific frequency ranges, rabbit low amplitude rhythmic contraction waveforms were divided into 1 tonic and 2 phasic components, defined as A0 + A1F1 + A2F2, where A0 is a length dependent basal tonic component that increases linearly, A1F1 is a slow wave with a length dependent specific amplitude (A1) and a length independent constant frequency (F1) of approximately 11.2 Hz, and A2F2 is a fast wave with a length dependent amplitude (A2) and frequency (F2) of approximately 0.03 Hz.

CONCLUSIONS

Fast Fourier transform analysis revealed that rabbit low amplitude rhythmic contractions consist of a basal tonic component plus 2 phasic components. The amplitude of all 3 components was length dependent. The frequency of the fast component was not length dependent and the slow component was absent at short muscle lengths, developing only at muscle lengths beyond that producing a maximum active contraction.

摘要

目的

膀胱壁肌肉(逼尿肌)会产生低振幅有节奏的收缩。逼尿肌中过度活跃的膀胱患者的低振幅有节奏收缩活动增加。在这项体外研究中,我们使用快速傅里叶变换来评估低振幅有节奏收缩成分的长度依赖性。

材料和方法

将兔逼尿肌条置于两个夹子之间的肌肉浴中,以调整长度并记录等长张力。组织从 70%拉伸到 130%参考肌肉长度,以 10%的增量递增,允许在每个长度下发展 20 分钟的低振幅有节奏收缩。使用快速傅里叶变换分析低振幅有节奏收缩数据,并以频率而不是时间谱表示。

结果

基于快速傅里叶变换分析,通过特定频率范围内的信号峰进行总结,兔低振幅有节奏收缩波形分为 1 个紧张和 2 个相位成分,定义为 A0+A1F1+A2F2,其中 A0 是依赖长度的基础紧张成分,呈线性增加,A1F1 是具有依赖长度的特定幅度(A1)和独立长度的恒定频率(F1)的慢波,约为 11.2 Hz,A2F2 是具有依赖长度的幅度(A2)和频率(F2)的快波,约为 0.03 Hz。

结论

快速傅里叶变换分析表明,兔低振幅有节奏收缩由一个基础紧张成分加 2 个相位成分组成。所有 3 个成分的幅度都是依赖长度的。快速成分的频率不依赖长度,而慢波在短肌肉长度下不存在,仅在产生最大主动收缩的肌肉长度以上发展。

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