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糖尿病大鼠在不同深度七氟醚麻醉下视觉通路的电生理评估

Electrophysiologic evaluation of the visual pathway at different depths of sevoflurane anesthesia in diabetic rats.

作者信息

Iliescu Daniela Adriana, Ciubotaru Alexandra, Ghiţă Mihai Aurelian, Păun Adrian Marius, Ion Tudor, Zăgrean Leon

机构信息

Physiology Department, "Carol Davila" University of Medicine and Pharmacy, Bucharest, Romania.

Ophthalmology Department, "Dr. Carol Davila" Central Military University Emergency Hospital, Bucharest, Romania.

出版信息

Rom J Ophthalmol. 2018 Jan-Mar;62(1):34-41.

Abstract

Our study investigated the changes produced by diabetes on the visual pathway in a Wistar rat model. The impact of diabetes at 10 weeks after intraperitoneal streptozotocin (STZ) injection was evaluated through electrophysiological methods like visual evoked potentials (VEP) and electroretinogram (ERG). VEP and ERG were recorded simultaneously under different sevoflurane anesthetic depths. In all tested concentrations, sevoflurane affected the amplitude and latency of VEP and ERG component elements. With increasing anesthetic depths, sevoflurane increased the latencies of VEP N1, P1 and N2 peaks and ERG a- and b- waves in both control and diabetic animals. On the other hand, the amplitude of VEP showed enhancement in higher concentrations of sevoflurane, contrariwise to the drop of amplitude seen in the ERG. Diabetes additionally increased the latencies of VEP peaks and decreased the N1-P1 amplitude of the VEP when compared to control at the same anesthetic depth. The a- and b- waves were also delayed by diabetes at 10 weeks post-STZ diabetic induction, with the exception of highly profound anesthetic depth in which the result for the b wave were conflicting. We found a reduction in amplitude of the a-b wave in diabetic animals, when ERG was recorded under 6% and 8% sevoflurane concentration. In conclusion, neurophysiological studies like VEP and ERG are useful in the assessment of retinal and optic nerve dysfunctions produced by diabetes, yet considering the alterations that occur during anesthesia if this is used.

摘要

我们的研究在Wistar大鼠模型中探究了糖尿病对视觉通路产生的变化。通过视觉诱发电位(VEP)和视网膜电图(ERG)等电生理方法评估腹腔注射链脲佐菌素(STZ)10周后糖尿病的影响。在不同的七氟醚麻醉深度下同时记录VEP和ERG。在所有测试浓度下,七氟醚均影响VEP和ERG组成成分的振幅和潜伏期。随着麻醉深度增加,七氟醚使对照动物和糖尿病动物的VEP的N1、P1和N2峰潜伏期以及ERG的a波和b波潜伏期均增加。另一方面,七氟醚浓度较高时VEP振幅增强,这与ERG中观察到的振幅下降相反。与相同麻醉深度下的对照相比,糖尿病还增加了VEP峰的潜伏期并降低了VEP的N1 - P1振幅。在STZ诱导糖尿病10周后,糖尿病也使a波和b波延迟,除了在深度麻醉时b波的结果存在矛盾。当在6%和8%七氟醚浓度下记录ERG时,我们发现糖尿病动物的a - b波振幅降低。总之,像VEP和ERG这样的神经生理学研究在评估糖尿病引起的视网膜和视神经功能障碍方面是有用的,不过如果使用麻醉则要考虑麻醉期间发生的改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c105/5959023/8a3e209ae073/RomJOphthalmol-62-34-g001.jpg

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