Biosystems and Devices Area, Division of Electrical, Electronic and Information Engineering, Department of Electronic Engineering, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Sci Rep. 2017 Oct 26;7(1):14165. doi: 10.1038/s41598-017-14303-1.
The Royal College of Surgeons (RCS) rat gradually loses vision due to retinal degeneration. Previous physiological studies have depicted the progressive loss of optical responses in the visual pathway, including the primary visual cortex (V1), over the course of retinal degeneration in the RCS rat. However, little is known about how the excitability of the V1 circuit changes during over the course of the gradual loss of visual signal input from the retina. We elucidated the properties of responses to electrical stimulations directly applied to V1 at different stages of vision input loss in the RCS rat in reference to those of the Long-Evans (LE) rat, using in vivo voltage-sensitive dye imaging. The V1 neuronal network of the RCS rat exhibited an excitatory response comparable to the LE rat. The excitatory response was maintained even long after total loss of the visual signal input from the retina. However, the response time-course suggested that the suppressive response was somewhat debilitated in the RCS rat. This is the first experiment demonstrating the long-term effect of retinal degeneration on cortical activities. Our findings provide the physiological fundamentals to enhance the preclinical research of cortical prostheses with the use of the RCS rat.
皇家外科学院(RCS)大鼠由于视网膜变性而逐渐失明。以前的生理学研究描述了在 RCS 大鼠视网膜变性过程中,视觉通路中包括初级视觉皮层(V1)在内的光反应逐渐丧失。然而,对于在视网膜视觉信号输入逐渐丧失的过程中,V1 回路的兴奋性如何变化,人们知之甚少。我们使用在体电压敏感染料成像,在 RCS 大鼠视觉输入损失的不同阶段,阐明了直接施加到 V1 的电刺激反应的特性,并与 Long-Evans(LE)大鼠进行了比较。RCS 大鼠的 V1 神经网络表现出与 LE 大鼠相当的兴奋性反应。即使在视网膜的视觉信号输入完全丧失后,兴奋性反应仍能维持。然而,反应时程表明,RCS 大鼠的抑制性反应有些减弱。这是第一个证明视网膜变性对皮质活动产生长期影响的实验。我们的研究结果为使用 RCS 大鼠增强皮质假体的临床前研究提供了生理基础。