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Auditory cortex activation to natural speech and simulated cochlear implant speech measured with functional near-infrared spectroscopy

机译:用功能性近红外光谱法测量听觉皮层对自然语音和模拟人工耳蜗语音的激活

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摘要

The primary goal of most cochlear implant procedures is to improve a patient’s ability to discriminate speech. To accomplish this, cochlear implants are programmed so as to maximize speech understanding. However, programming a cochlear implant can be an iterative, labor-intensive process that takes place over months. In this study, we sought to determine whether functional near-infrared spectroscopy (fNIRS), a non-invasive neuroimaging method which is safe to use repeatedly and for extended periods of time, can provide an objective measure of whether a subject is hearing normal speech or distorted speech. We used a 140 channel fNIRS system to measure activation within the auditory cortex in 19 normal hearing subjects while they listed to speech with different levels of intelligibility. Custom software was developed to analyze the data and compute topographic maps from the measured changes in oxyhemoglobin and deoxyhemoglobin concentration. Normal speech reliably evoked the strongest responses within the auditory cortex. Distorted speech produced less region-specific cortical activation. Environmental sounds were used as a control, and they produced the least cortical activation. These data collected using fNIRS are consistent with the fMRI literature and thus demonstrate the feasibility of using this technique to objectively detect differences in cortical responses to speech of different intelligibility.
机译:大多数人工耳蜗植入程序的主要目标是提高患者的语音辨别能力。为此,对人工耳蜗进行编程,以使语音理解最大化。但是,对人工耳蜗进行编程可能是一个反复的,劳动强度大的过程,需要花费数月的时间。在这项研究中,我们试图确定功能性近红外光谱法(fNIRS)是一种可以安全重复使用并且长时间安全使用的非侵入性神经影像学方法,是否可以提供客观的指标来衡量受试者是否听力正常或语音失真。我们使用140通道fNIRS系统来测量19名正常听力受试者听觉皮层内的激活,同时他们列出了具有不同清晰度的语音。开发了定制软件,以分析数据并根据测得的氧合血红蛋白和脱氧血红蛋白浓度变化计算地形图。正常的言语确实引起听觉皮层内最强烈的反应。言语失真导致较少的区域特异性皮层激活。使用环境声音作为控制,它们产生的皮质激活最少。使用fNIRS收集的这些数据与fMRI文献一致,因此证明了使用此技术客观检测对不同清晰度语音的皮质反应差异的可行性。

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