Department of Medicine, University of Fribourg, Fribourg, Switzerland.
Department of Neurobiology, School of Basic Medical Sciences, Nanjing Medical University, Nanjing, China.
Elife. 2023 Oct 4;12:e90431. doi: 10.7554/eLife.90431.
The lateral geniculate nucleus (LGN), a retinotopic relay center where visual inputs from the retina are processed and relayed to the visual cortex, has been proposed as a potential target for artificial vision. At present, it is unknown whether optogenetic LGN stimulation is sufficient to elicit behaviorally relevant percepts, and the properties of LGN neural responses relevant for artificial vision have not been thoroughly characterized. Here, we demonstrate that tree shrews pretrained on a visual detection task can detect optogenetic LGN activation using an AAV2-CamKIIα-ChR2 construct and readily generalize from visual to optogenetic detection. Simultaneous recordings of LGN spiking activity and primary visual cortex (V1) local field potentials (LFPs) during optogenetic LGN stimulation show that LGN neurons reliably follow optogenetic stimulation at frequencies up to 60 Hz and uncovered a striking phase locking between the V1 LFP and the evoked spiking activity in LGN. These phase relationships were maintained over a broad range of LGN stimulation frequencies, up to 80 Hz, with spike field coherence values favoring higher frequencies, indicating the ability to relay temporally precise information to V1 using light activation of the LGN. Finally, V1 LFP responses showed sensitivity values to LGN optogenetic activation that were similar to the animal's behavioral performance. Taken together, our findings confirm the LGN as a potential target for visual prosthetics in a highly visual mammal closely related to primates.
外侧膝状体核(LGN)是视网膜传入视觉信息进行处理和中继到视觉皮层的视网膜位相中继中心,它被认为是人工视觉的潜在目标。目前,尚不清楚光遗传学 LGN 刺激是否足以引起行为相关的感知,并且与人工视觉相关的 LGN 神经反应的特性尚未得到彻底表征。在这里,我们证明,经过视觉检测任务预训练的树鼩可以使用 AAV2-CamKIIα-ChR2 构建体检测光遗传学 LGN 激活,并很容易从视觉检测到光遗传学检测中进行概括。在光遗传学 LGN 刺激期间同时记录 LGN 尖峰活动和初级视觉皮层(V1)局部场电位(LFP)表明,LGN 神经元可靠地遵循高达 60 Hz 的光遗传学刺激,并且在 V1 LFP 和 LGN 中诱发的尖峰活动之间发现了惊人的相位锁定。这些相位关系在广泛的 LGN 刺激频率范围内得到维持,高达 80 Hz,与尖峰场相干值有利于更高的频率,表明使用 LGN 的光激活向 V1 中继时间精确的信息的能力。最后,V1 LFP 响应对 LGN 光遗传学激活的敏感性值与动物的行为表现相似。总之,我们的发现证实了 LGN 作为与灵长类动物密切相关的高度视觉哺乳动物的视觉假体的潜在目标。