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A new method for analyzing auditory brain-stem response waveforms using a moving-minimum subtraction procedure of digitized analog recordings.

机译:一种利用数字化模拟记录的移动最小减法程序分析听觉脑干反应波形的新方法。

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摘要

The auditory brain-stem response (ABR) waveform comprises a set of waves (labeled I-VII) recorded with scalp electrodes over 10 ms after an auditory stimulation with a brief click sound. Quite often, the waves are fused (confluent) and baseline-irregular and sloped, making wave latencies and wave amplitudes difficult to establish. In the present paper, we describe a method, labeled moving-minimum subtraction, based on digitization of the analog ABR waveform (154 data points/ms) in order to achieve alignment of the ABR response to a straight baseline, often with clear baseline separation of waves and resolution of fused waves. Application of the new method to groups of patients showed marked differences in ABR waveforms between patients with schizophrenia versus patients with adult attention deficit/hyperactivity disorder versus healthy controls. The findings show promise regarding the possibility to identify ABR markers to be used as biomarkers as support for clinical diagnoses of these and other neuropsychiatric disorders.
机译:听觉脑干反应(ABR)波形包括在短暂的咔嗒声刺激下的10毫秒内用头皮电极记录的一组波(标记为I-VII)。通常,波被融合(汇合)并且基线不规则且倾斜,这使得波潜伏期和波幅难以建立。在本文中,我们基于模拟ABR波形(154个数据点/ ms)的数字化描述了一种标记为最小移动减法的方法,以实现ABR响应与直线基线的对齐,通常具有清晰的基线分离和融合波的分辨率。将该新方法应用于患者组显示,精神分裂症患者与成人注意缺陷/多动障碍患者与健康对照组之间的ABR波形存在显着差异。研究结果显示了关于鉴定ABR标记物用作生物标记物以支持这些和其他神经精神疾病的临床诊断的可能性的希望。

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