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利用基于磁共振成像(MRI)的主动形状模型来研究影响发声结构和气道的形态学及音高相关功能变化。

Using active shape modeling based on MRI to study morphologic and pitch-related functional changes affecting vocal structures and the airway.

作者信息

Miller Nicola A, Gregory Jennifer S, Aspden Richard M, Stollery Peter J, Gilbert Fiona J

机构信息

Aberdeen Biomedical Imaging Centre, Lilian Sutton Building, Foresterhill, Aberdeen, UK.

Bone and Musculoskeletal Programme, Institute of Medical Sciences, Foresterhill, Aberdeen, UK.

出版信息

J Voice. 2014 Sep;28(5):554-64. doi: 10.1016/j.jvoice.2013.12.002. Epub 2014 Mar 12.

Abstract

OBJECTIVE

The shape of the vocal tract and associated structures (eg, tongue and velum) is complicated and varies according to development and function. This variability challenges interpretation of voice experiments. Quantifying differences between shapes and understanding how vocal structures move in relation to each other is difficult using traditional linear and angle measurements. With statistical shape models, shape can be characterized in terms of independent modes of variation. Here, we build an active shape model (ASM) to assess morphologic and pitch-related functional changes affecting vocal structures and the airway.

METHOD

Using a cross-sectional study design, we obtained six midsagittal magnetic resonance images from 10 healthy adults (five men and five women) at rest, while breathing out, and while listening to, and humming low and high notes. Eighty landmark points were chosen to define the shape of interest and an ASM was built using these (60) images. Principal component analysis was used to identify independent modes of variation, and statistical analysis was performed using one-way repeated-measures analysis of variance.

RESULTS

Twenty modes of variation were identified with modes 1 and 2 accounting for half the total variance. Modes 1 and 9 were significantly associated with humming low and high notes (P < 0.001) and showed coordinated changes affecting the cervical spine, vocal structures, and airway. Mode 2 highlighted wide structural variations between subjects.

CONCLUSION

This study highlights the potential of active shape modeling to advance understanding of factors underlying morphologic and pitch-related functional variations affecting vocal structures and the airway in health and disease.

摘要

目的

声道及其相关结构(如舌头和软腭)的形状复杂,会随着发育和功能而变化。这种变异性给语音实验的解读带来了挑战。使用传统的线性和角度测量方法很难量化形状之间的差异,也难以理解发声结构之间的相对运动方式。借助统计形状模型,可以根据独立的变化模式来表征形状。在此,我们构建了一个主动形状模型(ASM),以评估影响发声结构和气道的形态学及音高相关功能变化。

方法

采用横断面研究设计,我们获取了10名健康成年人(5名男性和5名女性)在静息状态、呼气时、听高低音以及哼唱高低音时的6张正中矢状面磁共振图像。选择了80个地标点来定义感兴趣的形状,并使用这些(60张)图像构建了一个ASM。主成分分析用于识别独立的变化模式,并使用单向重复测量方差分析进行统计分析。

结果

识别出了20种变化模式,其中模式1和模式2占总方差的一半。模式1和模式9与哼唱高低音显著相关(P < 0.001),并显示出影响颈椎、发声结构和气道的协同变化。模式2突出了受试者之间广泛的结构差异。

结论

本研究突出了主动形状建模在推进对影响健康和疾病状态下发声结构及气道的形态学和音高相关功能变化潜在因素理解方面的潜力。

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