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首页> 外文期刊>Investigative ophthalmology & visual science >Electrical stimulation of rat retina elicits retinotopic cortical electrophysiology activity with a dose response characteristic
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Electrical stimulation of rat retina elicits retinotopic cortical electrophysiology activity with a dose response characteristic

机译:对大鼠视网膜的电刺激引起具有剂量反应特性的视网膜皮质电生理活动

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Purpose: The purpose of this study is to characterize electrophysiological response in the visual cortex elicited by electrical stimulation of rat retina. Methods: Three Long Evans female rats under anesthesia were used for this study. A 75 e???m diameter cylindrical Pt-Ir electrode was inserted into the left eye.The tip of the electrode was placed 50-100 e???m from the ventral temporal area of the retina. Charge balanced biphasic stimulus current pulses from 30 to 100 e???A and 0.5 ms duration were delivered to the retina at 1 Hz. A craniotomy was performed to expose the right visual cortex. A tungsten recording electrode was advanced into the visual cortex to capture elicited electrophysiological signals. The electrically evoked response (EER) was amplified (gain 2000) and low-pass filtered (cutoff frequency 8 kHz), and sampled at 20 kHz. EERs were recorded at multiple sites in the visual cortex of each rat. For each stimulus condition, the EER was averaged over 25 stimulus pulses. Digital filtering was applied to remove high frequency and 60 Hz noise before analysis. The root mean square (rms) value of the EER after stimulus pulse over 40 ms (signal) was compared with the rms value before stimulus (noise) to calculate signal to noise ratios (SNR) for each stimulus condition. Results: We measured detectable EERs (defined as 10 dB SNR with 100 uA stimulus) 3.25 - 4 mm lateral and 0.75 mm anterior - 0.5 mm posterior to lambda. Previous studies have shown that light stimulus of ventral temporal retina evokes cortical activity in the region 3 - 5 mm lateral and 2 mm anterior - 0.5 mm posterior to lambda. No detectable EERs were measured 0.25 mm away from this cortical region. The measured EER SNR (n=17 locations in 3 rats) showed a dose response relationship with respect to stimulus current with some locations showing monotonic behavior (n = 6) and some locations showing peak SNR at intermediate current (n = 8). At 100 e???A stimulus current, the mean SNR was 17.3 dB with a standard deviation of 3.3 dB (n=15) in the cortical regions that showed detectable EERs. Conclusions: Our results show that focal electrical stimulation of rat retina elicits visual cortex activity in the same region where light stimulus generates activity. This study will form a baseline to evaluate long-term stimulation of rat retina.
机译:目的:本研究的目的是表征电刺激大鼠视网膜引起的视觉皮层中的电生理反应。方法:采用三只麻醉的Long Evans雌性大鼠进行此项研究。将直径为75μm的圆柱形Pt-Ir电极插入左眼。将电极的尖端放置在距视网膜腹侧颞区50-100μm的位置。电荷平衡的双相刺激电流脉冲从30到100 e-A和0.5 ms的持续时间以1 Hz的频率传递到视网膜。开颅手术暴露右视皮层。将钨记录电极推进到视觉皮层中,以捕获诱发的电生理信号。电诱发的响应(EER)被放大(增益2000)并经过低通滤波(截止频率8 kHz),并在20 kHz采样。在每只大鼠的视皮层的多个部位记录了EER。对于每种刺激条件,EER均取25个刺激脉冲的平均值。在分析之前,应用了数字滤波以去除高频和60 Hz噪声。将刺激脉冲超过40毫秒(信号)后EER的均方根(rms)值与刺激(噪声)之前的rms值进行比较,以计算每种刺激条件下的信噪比(SNR)。结果:我们测量了可检测到的EER(定义为> 10 dB SNR,具有100 uA刺激),横向3.25-4 mm,前0.75 mm-λ后0.5 mm。先前的研究表明,腹侧视网膜的光刺激在侧视3-5 mm和前2 mm-后0.5 mm区域引起皮质活动。距离该皮质区域0.25 mm处未测量到可检测到的EER。测得的EER SNR(3只大鼠中的n = 17个位置)显示出与刺激电流的剂量响应关系,其中一些位置显示出单调性行为(n = 6),而某些位置显示了在中间电流时的峰值SNR(n = 8)。在100 e.A的刺激电流下,在显示可检测到的EER的皮质区域中,平均SNR为17.3 dB,标准偏差为3.3 dB(n = 15)。结论:我们的研究结果表明,对大鼠视网膜进行局部电刺激会在光刺激产生活性的同一区域引发视觉皮层活动。这项研究将成为评估大鼠视网膜长期刺激的基线。

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