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首页> 外文期刊>Neural regeneration research >Reversibility of visual field defects through induction of brain plasticity: vision restoration, recovery and rehabilitation using alternating current stimulation
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Reversibility of visual field defects through induction of brain plasticity: vision restoration, recovery and rehabilitation using alternating current stimulation

机译:通过脑塑性诱导可逆性视野缺陷:使用交流刺激的视觉恢复,恢复和康复

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For decades visual field defects were considered irreversible because it was thought that in the visual system the regeneration potential of the neuronal tissues is low. Nevertheless, there is always some potential for partial recovery of the visual field defect that can be achieved through induction of neuroplasticity. Neuroplasticity refers to the ability of the brain to change its own functional architecture by modulating synaptic efficacy. It is maintained throughout life and just as neurological rehabilitation can improve motor coordination, visual field defects in glaucoma, diabetic retinopathy or optic neuropathy can be improved by inducing neuroplasticity. In ophthalmology many new treatment paradigms have been tested that can induce neuroplastic changes, including non-invasive alternating current stimulation. Treatment with alternating current stimulation (e.g., 30 minutes, daily for 10 days using transorbital electrodes and ~10 Hz) activates the entire retina and parts of the brain. Electroencephalography and functional magnetic resonance imaging studies revealed local activation of the visual cortex, global reorganization of functional brain networks, and enhanced blood flow, which together activate neurons and their networks. The future of low vision is optimistic because vision loss is indeed, partially reversible.
机译:几十年来,视野缺陷被认为是不可逆转的,因为它认为在视觉系统中,神经元组织的再生电位低。然而,通过诱导神经塑性,总是存在部分恢复视野缺陷的可能性。神经塑性是指大脑通过调节突触功效来改变其自身功能架构的能力。它在整个生命中保持,并且作为神经系统康复可以改善电动机协调,通过诱导神经塑性可以改善青光眼,糖尿病视网膜病变或视神经病变中的视野缺陷。在眼科学中,已经测试了许多新的治疗范式,可以诱导神经塑性变化,包括非侵入性交流刺激。用交流电流刺激处理(例如,使用经肾性电极和〜10Hz每天10天,每天10天)激活整个视网膜和脑的一部分。脑电图和功能性磁共振成像研究显示了局部激活视觉皮质,功能性脑网络的全局重组,以及增强的血流,它们一起激活神经元及其网络。低视力的未来是乐观的,因为视觉损失确实是可逆的。

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