首页> 外文会议>Interferometry Conference >High-speed holographic system for full-field transient vibrometry of the human tympanic membrane
【24h】

High-speed holographic system for full-field transient vibrometry of the human tympanic membrane

机译:用于全场瞬态振动器的高速全息系统,人鼓膜膜的全场瞬态振动器

获取原文

摘要

Understanding of the human hearing process requires the quantification of the transient response of the human ear and the human tympanic membrane (TM or eardrum) in particular. Current state-of-the-art medical methods to quantify the transient acousto-mechanical response of the TM provide only averaged acoustic or local information at a few points. This may be insufficient to fully describe the complex patterns unfolding across the full surface of the TM. Existing engineering systems for full-field nanometer measurements of transient events, typically based on holographic methods, constrain the maximum sampling speed and/or require complex experimental setups. We have developed and implemented of a new high-speed (i.e., > 40 Kfps) holographic system (HHS) with a hybrid spatio-temporal local correlation phase sampling method that allows quantification of the full-field nanometer transient (i.e., > 10 kHz) displacement of the human TM. The HHS temporal accuracy and resolution is validated versus a LDV on both artificial membranes and human TMs. The high temporal (i.e., < 24 μs) and spatial (i.e., >100k data points) resolution of our HHS enables simultaneous measurement of the time waveform of the full surface of the TM. These capabilities allow for quantification of spatially-dependent motion parameters such as energy propagation delays surface wave speeds, which can be used to infer local material properties across the surface of the TM. The HHS could provide a new tool for the investigation of the auditory system with applications in medical research, in-vivo clinical diagnosis as well as hearing aids design.
机译:理解人体听力过程需要尤其定量人耳和人鼓膜(TM或耳膜)的瞬态响应。目前最先进的医疗方法,用于量化TM的瞬态声学 - 机械响应,仅提供几点的平均声学或本地信息。这可能不足以完全描述在TM的全表面上展开的复杂模式。用于瞬态事件的全场纳米测量的现有工程系统,通常基于全息方法,约束最大采样速度和/或需要复杂的实验设置。我们开发并实施了具有混合时空局部局部相关相采样采样方法的新型高速(即,> 40克FFPS)全息系统(HHS),其允许量化全场纳米瞬态(即> 10kHz) )人类TM的位移。 HHS时间精度和分辨率验证了人工膜和人体TMS上的LDV。我们HHS的高时(即,<24μs)和空间(即,> 100k数据点)的分辨率使得能够同时测量TM的全表面的时间波形。这些能力允许定量空间依赖的运动参数,例如能量传播延迟表面波速度,其可用于推断在TM的表面上的局部材料特性。 HHS可以为在医学研究中的应用,体内临床诊断以及助听器设计进行调查的新工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号