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首页> 外文期刊>Brain and Behavior >Manganese-enhanced magnetic resonance imaging combined with electrophysiology in the evaluation of visual pathway in experimental rat models with monocular blindness
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Manganese-enhanced magnetic resonance imaging combined with electrophysiology in the evaluation of visual pathway in experimental rat models with monocular blindness

机译:锰增强磁共振成像结合电生理技术评估单眼失明实验动物模型的视觉通路

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Abstract Purpose Our study aimed to explore the feasibility of manganese-enhanced magnetic resonance imaging (MEMRI) combined with visual evoked potentials (VEP) and auditory evoked visual cortex responses (AVR) in evaluating for the establishment of visual/auditory compensatory pathways after monocular blindness. Materials and Methods A total of 14 healthy neonatal male Sprague-Dawley rats were randomly divided into two groups ( n = 7 for Groups A and B). Right optic nerve (ON) transection was performed on the 7 rats of Group A to obtain a monocularly blind model, and the 7 rats of Group B were chosen as the control group. Four months later, 400 mmol MnCl 2 was injected into the left eye in both groups via intravitreal injection. The changes in the visual pathways projected from the blind eye and the remaining eye in Group A and the normal eyes in Group B were compared to determine if new visual compensatory pathways were established. Additionally, VEP tests were performed to determine complete blindness, and AVR examinations were performed to help identify the generation of auditory compensatory function. Results The VEP test indicated complete visual loss after ON transection. In the monocularly blind rats, the contrast-to-noise ratio (CNR) of ON, optic tract (OT), lateral geniculate nucleus (LGN), superior colliculus (SC), optic radiation (OR) and visual cortex (VC) of visual pathway projected from the left eye was significantly higher than that of the right pathway ( p < .001). Moreover, the CNR of ON, OT, LGN, SC, OR and VC in the visual pathway projected from the left eye of monocularly blind rats was significantly lower than those of normal rats ( p < .05). The AVR results revealed that the corresponding bilateral visual cortex in monocularly blind rats did not respond to the auditory stimulus or showed dissimilation with the low frequency. Conclusion MEMRI combined with electrophysiology, including VEP and AVR, may be potentially helpful in the evaluation of the possible generation of new visual/auditory compensatory pathways after monocular blindness.
机译:摘要目的我们的研究旨在探讨锰增强磁共振成像(MEMRI)结合视觉诱发电位(VEP)和听觉诱发视觉皮层反应(AVR)在评估单眼失明后建立视觉/听觉补偿途径的可行性。材料和方法总共将14只健康的新生雄性Sprague-Dawley大鼠随机分为两组(A组和B组为n = 7)。对A组7只大鼠进行右眼视神经横断,获得单眼盲模型,选择B组7只作为对照组。 4个月后,通过玻璃体内注射将400mmol MnCl 2注入两组。比较从A组的盲眼和其余的眼睛以及B组的正常眼投射的视觉通路的变化,以确定是否建立了新的视觉补偿通路。此外,进行了VEP测试以确定完全失明,并进行了AVR检查以帮助识别听觉代偿功能的产生。结果VEP测试显示ON横切后完全视力丧失。在单眼盲大鼠中,ON的对比噪声比(CNR),视神经束(OT),外侧膝状核(LGN),上丘(SC),视辐射(OR)和视皮层(VC)从左眼投射的视觉通路明显高于右通路(p <.001)。此外,单眼盲大鼠左眼投射的视觉通路中的ON,OT,LGN,SC,OR和VC的CNR显着低于正常大鼠(p <.05)。 AVR结果表明,单眼盲大鼠相应的双侧视皮层对听觉刺激无反应或表现为低频异化。结论MEMRI与包括VEP和AVR在内的电生理学结合可能对评估单眼失明后可能产生的新的视觉/听觉补偿途径产生帮助。

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