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Optimal spatial filtering for auditory steady-state response detection using high-density EEG

机译:使用高密度脑电图进行听觉稳态响应检测的最佳空间滤波

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Using periodic auditory stimuli, it is possible to evoke so-called auditory steady-state responses (ASSRs) in the brain, which can be measured using electroencephalography (EEG). They can be used to objectively estimate frequency-specific hearing thresholds, which is especially useful for early hearing assessment in newborns. The main problem is the extremely low signal-to-noise ratio (SNR), necessitating long measurements of up to an hour for a full audiometric assessment. To speed up the detection, we apply a linear spatial filter to the multi-channel EEG measurements, resulting in a new 'virtual' channel with optimal SNR. To ensure robustness, we then consider a hybrid ASSR detection method in which the original EEG channels are complemented with this virtual channel. The addition of this virtual channel successfully speeds up the detection of ASSRs by over 15 %. Furthermore our method not only speeds up the detection, but also greatly improves its sensitivity, in particular in the (clinically most relevant) lowest SNR scenarios. This could help reduce the gap that still exists between behaviourally and objectively obtained hearing thresholds.
机译:使用周期性的听觉刺激,可以在大脑中诱发所谓的听觉稳态反应(ASSR),可以使用脑电图(EEG)对其进行测量。它们可用于客观估计特定频率的听力阈值,这对于新生儿的早期听力评估特别有用。主要问题是极低的信噪比(SNR),因此需要进行长达一个小时的长时间测量才能进行完整的听力测评。为了加快检测速度,我们将线性空间滤波器应用于多通道EEG测量,从而产生具有最佳SNR的新“虚拟”通道。为了确保鲁棒性,我们然后考虑一种混合式ASSR检测方法,其中原始EEG通道对此虚拟通道进行了补充。添加此虚拟通道可以成功地将ASSR的检测速度提高15%以上。此外,我们的方法不仅可以加快检测速度,而且可以大大提高其灵敏度,特别是在(临床上最相关的)最低SNR情况下。这可以帮助减少行为和客观获得的听力阈值之间仍然存在的差距。

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