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Investigating the nonlinear dynamics of cellular motion in the inner ear using the short-time Fourier and continuous wavelet transforms

机译:使用短时傅立叶和连续小波变换研究内耳中细胞运动的非线性动力学

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The short-time Fourier transform (STFT) and the continuous wavelet transform (CWT) are used to analyze the time course of cellular motion in the inner ear. The velocity responses of individual outer hair cells and Hensen's cells to sinusoidal and amplitude modulated (AM) acoustical signals applied at the ear canal display characteristics typical of nonlinear systems, including the generation of harmonic and half-harmonic components. The STFT proves to be valuable for following the time course of the frequency components generated using sinusoidal and ARM input signals. The CWT is also useful for analyzing these signals; however, it is generally not as effective as the STFT when octave-band-based CWT's are used. For the transient response, the spectrogram (which is the squared magnitude of the STFT) and the octave-band-based scalogram (which is the squared magnitude of the CWT) prove equally valuable, and the authors have used both to study the responses of these cells to step-onset tones of different frequencies. Such analyses reveal information about the preferred vibration frequencies of cells in the inner ear and are useful for deciding among alternative mathematical models of nonlinear cellular dynamics. A modified Duffing oscillator model yields results that bear some similarity to the data.
机译:短时傅立叶变换(STFT)和连续小波变换(CWT)用于分析内耳中细胞运动的时程。各个外部毛细胞和Hensen细胞对施加在耳道上的正弦和振幅调制(AM)声信号的速度响应显示出非线性系统的典型特征,包括谐波和半谐波成分的产生。 STFT被证明对于跟踪使用正弦和ARM输入信号生成的频率分量的时程非常有价值。 CWT对分析这些信号也很有用。然而,当使用基于八度音带的CWT时,它通常不如STFT有效。对于瞬态响应,频谱图(即STFT的平方幅度)和基于八度带的比例图(即CWT的平方幅度)被证明具有同等的价值,并且作者都使用这两种方法来研究瞬态响应。这些单元可以逐步启动不同频率的音调。这样的分析揭示了有关内耳中细胞优选振动频率的信息,对于确定非线性细胞动力学的替代数学模型很有用。改进的Duffing振荡器模型得出的结果与数据有些相似。

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