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健康 4 周龄仔猪的听觉诱发电位和视觉诱发电位存在区域性差异。

Regional variations distinguish auditory from visual evoked potentials in healthy 4 week old piglets.

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Emory University and Georgia Institute of Technology, Atlanta, Georgia, United States of America.

LEICI Instituto de Investigaciones en Electrónica, Control y Procesamiento de Señales, Facultad de Ingeniería, Universidad Nacional de La Plata, Buenos Aires, Argentina.

出版信息

Physiol Meas. 2023 Feb 28;44(2):025006. doi: 10.1088/1361-6579/acb4da.

Abstract

Evoked potentials (EP), measured using electroencephalographic (EEG) recordings provide an opportunity to monitor cognitive dysfunctions after neurological diseases or traumatic brain injury (TBI). The 4 week old piglet is an established model of paediatric TBI; therefore, healthy piglets were studied to establish feasibility of obtaining responses to auditory and visual stimuli. A secondary aim was to input the EEG data into a piglet computational model to localize the brain sources related to processing. We tested the hypotheses: (1) visual, auditory-standard, and auditory-target stimuli elicit responses, (2) there is an effect of stimulus type, day tested, and electrode region on EPs from EEG, (3) there is an effect of stimulus type, day tested, and brain region on localized sources from a computational model.Eleven 4 week old female piglets were fitted with a 32-electrode net and presented with a simple white light stimulus and an auditory oddball click train (70 standard; 30 target tones).1 and2 amplitudes were consistently observed for all stimulus types. Significant interaction effects between brain region and stimulus for EP and current density demonstrate that cognitive responses are specific to each modality with auditory localizing to the temporal region and visual to the occipital regions. There was a day effect where larger responses were found on the first day than day 2 and 3 and may be due to the novelty of the stimulus on the first day. Visual stimuli had larger1 amplitudes and earlier latencies (1,1) than auditory which coincides with current density results at 50 ms where larger activations were observed for visual. At 85 ms, auditory had significantly larger current densities coincident with larger and longer1 amplitudes and latencies than visual.Auditory and visual processing were successfully and consistently obtained in a porcine model and can be evaluated as a diagnostic assessment for TBI.

摘要

诱发电位(EP)通过脑电图(EEG)记录进行测量,为监测神经疾病或创伤性脑损伤(TBI)后的认知功能障碍提供了机会。4 周龄仔猪是儿科 TBI 的成熟模型;因此,本研究旨在健康仔猪中评估获得听觉和视觉刺激反应的可行性。次要目的是将 EEG 数据输入仔猪计算模型,以定位与处理相关的脑源。我们检验了以下假设:(1)视觉、听觉标准和听觉靶刺激会引发反应,(2)刺激类型、测试日和电极区域对 EEG 中的 EP 有影响,(3)刺激类型、测试日和大脑区域对计算模型中的局部源有影响。11 只 4 周龄雌性仔猪佩戴 32 电极网,并呈现简单的白光刺激和听觉偶发点击序列(70 个标准;30 个靶音)。所有刺激类型均观察到 1 和 2 振幅。EP 和电流密度的脑区和刺激之间存在显著的交互作用,表明认知反应是每种模态特有的,听觉定位于颞区,视觉定位于枕区。存在日效应,即第一天的反应大于第二天和第三天,这可能是由于第一天刺激的新颖性所致。视觉刺激的 1 振幅较大,潜伏期较早(1,1),而听觉刺激的潜伏期较短,这与 50 ms 时的电流密度结果一致,视觉刺激的激活较大。85 ms 时,听觉的电流密度明显较大,与视觉相比,1 振幅较大,潜伏期较长。在猪模型中成功且一致地获得了听觉和视觉处理,可以作为 TBI 的诊断评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5eb3/9972182/61cea283c3a3/pmeaacb4daf1_lr.jpg

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