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哈斯金斯光学校正超声系统(HOCUS)。

The Haskins optically corrected ultrasound system (HOCUS).

作者信息

Whalen D H, Iskarous Khalil, Tiede Mark K, Ostry David J, Lehnert-Lehouillier Heike, Vatikiotis-Bateson Eric, Hailey Donald S

机构信息

Haskins Laboratories, New Haven, CT 06511, USA.

出版信息

J Speech Lang Hear Res. 2005 Jun;48(3):543-53. doi: 10.1044/1092-4388(2005/037).

Abstract

The tongue is critical in the production of speech, yet its nature has made it difficult to measure. Not only does its ability to attain complex shapes make it difficult to track, it is also largely hidden from view during speech. The present article describes a new combination of optical tracking and ultrasound imaging that allows for a noninvasive, real-time view of most of the tongue surface during running speech. The optical system (Optotrak) tracks the location of external structures in 3-dimensional space using infrared emitting diodes (IREDs). By tracking 3 or more IREDs on the head and a similar number on an ultrasound transceiver, the transduced image of the tongue can be corrected for the motion of both the head and the transceiver and thus be represented relative to the hard structures of the vocal tract. If structural magnetic resonance images of the speaker are available, they may allow the estimation of the location of the rear pharyngeal wall as well. This new technique is contrasted with other currently available options for imaging the tongue. It promises to provide high-quality, relatively low-cost imaging of most of the tongue surface during fairly unconstrained speech.

摘要

舌头在言语产生过程中至关重要,但其特性使得测量难度较大。不仅因其能够呈现复杂形状而难以追踪,而且在言语过程中大部分时间都隐藏于视线之外。本文介绍了一种光学追踪与超声成像的新组合,可在连续言语过程中对大部分舌面进行无创、实时观察。光学系统(Optotrak)利用红外发光二极管(IREDs)在三维空间中追踪外部结构的位置。通过追踪头部的3个或更多IREDs以及超声收发器上类似数量的IREDs,舌部的转换图像可针对头部和收发器的运动进行校正,从而相对于声道的硬结构进行呈现。如果有说话者的结构磁共振图像,还可估计咽后壁的位置。这项新技术与目前其他可用的舌部成像方法形成对比。它有望在相当自然的言语过程中为大部分舌面提供高质量、成本相对较低的成像。

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