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Deconvolution of high rate flicker electroretinograms

机译:高速率闪烁视网膜电图的反卷积

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Flicker electroretinograms are steady-state electroretinograms (ERGs) generated by high rate flash stimuli that produce overlapping periodic responses. When a flash stimulus is delivered at low rates, a transient response named flash ERG (FERG) representing the activation of neural structures within the outer retina is obtained. Although FERGs and flicker ERGs are used in the diagnosis of many retinal diseases, their waveform relationships have not been investigated in detail. This study examines this relationship by extracting transient FERGs from specially generated quasi steady-state flicker and ERGs at stimulation rates above 10 Hz and similarly generated conventional flicker ERGs. The ability to extract the transient FERG responses by deconvolving flicker responses to temporally jittered stimuli at high rates is investigated at varying rates. FERGs were obtained from seven normal subjects stimulated with LED-based displays, delivering steady-state and low jittered quasi steady-state responses at five rates (10, 15, 32, 50, 68 Hz). The deconvolution method enabled a successful extraction of “per stimulus” unit transient ERG responses for all high stimulation rates. The deconvolved FERGs were used successfully to synthesize flicker ERGs obtained at the same high stimulation rates.
机译:闪烁视网膜电图是由高速闪光刺激产生的稳态视网膜电图(ERG),它们会产生重叠的周期性响应。当以较低的速率传递闪光刺激时,会获得一个名为闪光ERG(FERG)的瞬态响应,该瞬态响应表示外部视网膜内神经结构的激活。尽管FERG和闪烁ERG被用于许多视网膜疾病的诊断,但它们的波形关系尚未得到详细研究。这项研究通过从特殊生成的准稳态闪烁和ERG(在高于10 Hz的刺激速率下)和类似生成的常规闪烁ERG中提取瞬态FERG来检验这种关系。以不同的速率研究了通过以高速率对瞬态抖动刺激进行反卷积反卷积来提取瞬态FERG响应的能力。从基于LED的显示器刺激的七个正常受试者获得FERG,以五个速率(10、15、32、50、68 Hz)提供稳态和低抖动的准稳态响应。解卷积方法能够成功提取所有高刺激率下的“每个刺激”单位瞬态ERG响应。去卷积的FERG被成功地用于合成以相同的高刺激速率获得的闪烁ERG。

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