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首页> 外文期刊>Medical engineering & physics. >Application of simulated annealing for estimating BAEPs in endocochlear pathologies.
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Application of simulated annealing for estimating BAEPs in endocochlear pathologies.

机译:模拟退火在耳蜗内病变中估计BAEP的应用。

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In this paper, we propose a new approach aimed at handling the temporal Brainstem Auditory Evoked Potentials (BAEPs) non-stationarity. It is pointed out that for some endocochlear pathologies, BAEPs could be randomly delayed from one response to another. This non-stationarity leads to smoothed BAEPs when applying ensemble averaging or any other technique based on BAEPs stationarity. In that case, waves identification is very difficult, sometimes impossible. The problem consists in estimating time delays. Knowing the distribution of delays allows subsequent study of the dynamic of the cochlea and, perhaps, identification of the nature of its pathology. The approach suggested in this paper is based on Simulated Annealing, used to minimize a non-linear criterion involving delays. This technique is advantageously compared to the non-corrected ensemble averaging method, using a set of simulated data based on a realistic model. As an illustration, results based on real signals recorded from two patients are presented and discussed at the end of the paper.
机译:在本文中,我们提出了一种新的方法,旨在处理暂时性脑干听觉诱发电位(BAEP)。需要指出的是,对于某些耳蜗内病变,BAEPs可能会从一种反应随机延迟到另一种反应。当应用整体平均或基于BAEPs平稳性的任何其他技术时,这种非平稳性会导致平滑的BAEP。在这种情况下,波浪识别非常困难,有时甚至是不可能的。问题在于估计时间延迟。知道延迟的分布可以进行耳蜗动力学的后续研究,也许还可以确定其病理性质。本文建议的方法基于模拟退火,用于最小化涉及延迟的非线性准则。使用基于现实模型的一组模拟数据,可将该技术与非校正集成平均方法进行比较。作为说明,在本文末尾介绍并讨论了基于从两名患者记录的真实信号得出的结果。

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