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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Objective and subjective evaluation of adaptive speech enhancement methods for functional MRI.
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Objective and subjective evaluation of adaptive speech enhancement methods for functional MRI.

机译:对功能性MRI的自适应语音增强方法进行客观和主观评估。

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PURPOSE: To recover speech corrupted by functional magnetic resonance imaging (fMRI) acoustic noise using two-channel adaptive speech enhancement techniques. MATERIALS AND METHODS: Speech corrupted by noise generated from a 3 T MRI scanner was recorded using diffuse-field microphones and a data acquisition board. Multiband and subband adaptive speech enhancement methods are used to recover the speech signal from the recordings. Normalized least mean squares (NLMS) algorithm was used for updating the filter coefficients in each band. RESULTS: The methods are successful in enhancing the speech quality. They are successful in improving the convergence rate of the adaptive filter. Multiband and subband methods have a similar performance in terms of noise reduction and in the subjective tests. The subband method introduces less speech distortion compared to the multiband method. The subband method requires a lower number of computations per sample. CONCLUSION: Adaptive speech enhancement techniques are effective in reducing fMRI background noise in the recordings. Based on the analysis, we conclude that subband-based methods are more suited for enhancing speech corrupted by fMRI noise.
机译:目的:使用两通道自适应语音增强技术来恢复因功能磁共振成像(fMRI)声噪声而损坏的语音。材料与方法:使用扩散场麦克风和数据采集板记录3T MRI扫描仪产生的噪声所破坏的语音。多频带和子带自适应语音增强方法用于从录音中恢复语音信号。归一化最小均方(NLMS)算法用于更新每个频带中的滤波器系数。结果:这些方法成功地提高了语音质量。它们成功地提高了自适应滤波器的收敛速度。在降噪和主观测试方面,多频带和子频带方法具有类似的性能。与多频带方法相比,子频带方法引入的语音失真更少。子带方法需要每个样本较少的计算量。结论:自适应语音增强技术可有效减少录音中的fMRI背景噪声。基于分析,我们得出结论,基于子带的方法更适合于增强被fMRI噪声破坏的语音。

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