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首页> 外文期刊>Journal of speech, language, and hearing research: JSLHR >Frequency response of synthetic vocal fold models with linear and nonlinear material properties
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Frequency response of synthetic vocal fold models with linear and nonlinear material properties

机译:具有线性和非线性材料特性的人声折叠模型的频率响应

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Purpose: The purpose of this study was to create synthetic vocal fold models with nonlinear stress-strain properties and to investigate the effect of linear versus nonlinear material properties on fundamental frequency (F 0) during anterior-posterior stretching. Method: Three materially linear and 3 materially nonlinear models were created and stretched up to 10mmin 1-mm increments. Phonation onset pressure (P on) and F 0 at P on were recorded for each length. Measurements were repeated as the models were relaxed in 1-mm increments back to their resting lengths, and tensile tests were conducted to determine the stress-strain responses of linear versus nonlinear models. Results: Nonlinear models demonstrated a more substantial frequency response than did linear models and a more predictable pattern of F 0 increase with respect to increasing length (although range was inconsistent across models). P on generally increased with increasing vocal fold length for nonlinear models, whereas for linear models, P on decreased with increasing length. Conclusion: Nonlinear synthetic models appear to more accurately represent the human vocal folds than do linear models, especially with respect to F 0 response.
机译:目的:本研究的目的是创建具有非线性应力应变特性的合成人声折叠模型,并研究线性与非线性材料特性在前后拉伸过程中对基频(F 0)的影响。方法:创建三个材料线性模型和3个材料非线性模型,并以1mm的增量拉伸到10mm。记录每个长度的声音开始压力(P on)和在P on的F 0。当模型以1mm的增量放松回到其静止长度时,重复进行测量,并进行拉伸测试以确定线性模型与非线性模型的应力应变响应。结果:与线性模型相比,非线性模型显示出更充分的频率响应,并且随着长度的增加,F 0的增加模式更加可预测(尽管各个模型的范围不一致)。对于非线性模型,P on通常随人声折叠长度的增加而增加,而对于线性模型,P on随着长度的增加而减小。结论:非线性合成模型似乎比线性模型更准确地表示人声,尤其是在F 0响应方面。

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