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Deconvolution and Modeling of Overlapping Visual Evoked Potentials

机译:视觉诱发电位重叠的反卷积和建模

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Visual Evoked Potentials (VEPs) are brain signals generated in response to visual stimuli which are used in the diagnosis of neuro-ophthalmic disorders and the development of brain computer interfaces (BCI). When a pattern-reversal stimulus is delivered at low rates, the acquired transient VEP response (VEPtr) represents the activation of neural structures in the visual pathway. For stimulation rates above six reversals per second (rps), response overlapping occurs and steady state responses are formed (VEPss). This study investigates VEP adaptation by deconvolving responses to temporally jittered stimuli at high rates. VEPs were obtained from normal subjects stimulated with a LED based pattern reversal stimulator delivering three steady-state (1.63, 8.14 and 13.02 rps) and two low-jitter (8.14 and 13.02 mean rps) sequences. Using the Continuous Loop Averaging Deconvolution (CLAD) method VEPtrs were extracted from the jittered responses. To verify the quality of the deconvolution process, the high-rate isochronic VEPss were compared with a synthetic response estimated with the VEPtr. Consistent VEPs (P100-N135) were obtained from all subjects at all rates. At high rates, latencies were slightly shorter while amplitudes were reduced differentially for P100 (80%) and N135 (20%). Models constructed using VEPtr, reliably predicted 8rps and 13rps VEPss confirming high SNR obtained in BCI applications.
机译:视觉诱发电位(VEP)是响应视觉刺激而生成的大脑信号,可用于诊断神经性眼科疾病和开发大脑计算机接口(BCI)。当模式反转刺激以低速率传递时,获得的瞬态VEP响应(VEPtr)表示视觉通路中神经结构的激活。对于高于每秒六次反转(rps)的刺激速率,会发生响应重叠,并形成稳态响应(VEPss)。这项研究通过使对高时速抖动刺激的响应解卷积来研究VEP适应性。从正常受试者获得VEP,这些受试者是用基于LED的图案反转刺激器刺激的,可提供三个稳态(1.63、8.14和13.02 rps)和两个低抖动(8.14和13.02平均rps)序列。使用连续循环平均反卷积(CLAD)方法,从抖动响应中提取了VEPtrs。为了验证去卷积处理的质量,将高速等时VEP与VEPtr估计的综合响应进行了比较。从所有受试者的所有比率获得一致的VEP(P100-N135)。在高速率下,P100(80%)和N135(20%)的延迟略短,而幅度则有所降低。使用VEPtr构建的模型,可靠预测的8rps和13rps VEPss确认了BCI应用中获得的高SNR。

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