首页> 外文期刊>The Journal of Urology >Fourier transform analysis of rabbit detrusor autonomous contractions reveals length dependent increases in tone and slow wave development at long lengths
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Fourier transform analysis of rabbit detrusor autonomous contractions reveals length dependent increases in tone and slow wave development at long lengths

机译:兔逼尿肌自主性收缩的傅里叶变换分析揭示了长度依赖性音长的增加和长距离慢波的发展

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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 + A 2F2, 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.
机译:目的:膀胱壁肌肉(逼尿肌)发展低振幅的节律性收缩。膀胱过度活动症患者逼尿肌的低振幅节律性收缩活动增加。在这项体外研究中,我们使用了快速傅立叶变换来评估低振幅节律性收缩成分的长度依赖性。材料和方法:将兔逼尿肌条放在两个夹子之间的肌肉浴中,以调节长度并记录等轴测张力。以10%的增量从参考肌肉长度的70%拉伸到130%的组织在20分钟内在每个长度处产生低幅度的节律性收缩。使用快速傅立叶变换分析低振幅节律性收缩数据,并用频率而非时间频谱表示。结果:基于快速傅里叶变换分析,该信号由特定频率范围内的信号峰总结而成,将兔低振幅节律性收缩波形分为1个强直和2个相位分量,定义为A0 + A1F1 + A 2F2,其中A0是与长度有关的基础强直线性增加的分量,A1F1是一个慢波,其长度依赖于特定振幅(A1),并且具有与长度无关的恒定频率(F1)约为11.2 Hz,而A2F2是一个快波,具有与长度相关的振幅(A2)和频率F2)约为0.03 Hz。结论:快速傅里叶变换分析显示,兔低振幅节律性收缩由基础补品成分和2个相成分组成。所有这三个分量的幅度都取决于长度。快速成分的频率与长度无关,而在短肌肉长度上则不存在慢成分,仅在超过产生最大主动收缩的肌肉长度上才发育。

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