Aihara Shuhei, Yoshida Takashi, Hashimoto Takayuki, Ohki Kenichi
Department of Molecular Physiology, Graduate School of Medical Sciences, Kyushu University Fukuoka, Japan.
Department of Molecular Physiology, Graduate School of Medical Sciences, Kyushu UniversityFukuoka, Japan; Department of Physiology, The University of Tokyo School of MedicineTokyo, Japan; Core Research for Evolutionary Science and Technology (CREST), Japan Science and Technology AgencyTokyo, Japan.
Front Neural Circuits. 2017 Mar 29;11:22. doi: 10.3389/fncir.2017.00022. eCollection 2017.
Dichromatic vision is common in many mammals. However, color processing in the primary visual cortex (V1) of dichromatic mammals is relatively unknown compared to the trichromatic primates. In this study, we investigated the functional organization of color processing in mouse V1. The mouse retina has a graded expression pattern of two opsins along its dorsoventral axis. However, it is not clear whether and how this expression pattern is reflected in the cortical representation at local (several hundred microns) and areal (V1) level. Using two-photon calcium (Ca) imaging and wide-field Ca imaging, we revealed that V1 neurons responded to S (UV)- and M (green)-opsin isolating stimuli with slightly biased color preference depending on retinotopic position in V1. This was consistent with the distribution of retinal opsins. At the cellular level, preferences for S- and M-opsin isolating stimuli were intermingled in a local region encompassing several hundred microns. These results suggest that functional organizations of color information are locally intermingled, but slightly biased depending on the retinotopic position in mouse V1.
双色视觉在许多哺乳动物中很常见。然而,与三色灵长类动物相比,双色哺乳动物初级视觉皮层(V1)中的颜色处理相对不为人知。在本研究中,我们研究了小鼠V1中颜色处理的功能组织。小鼠视网膜沿其背腹轴具有两种视蛋白的分级表达模式。然而,尚不清楚这种表达模式是否以及如何在局部(数百微米)和区域(V1)水平的皮层表征中得到体现。使用双光子钙(Ca)成像和广角Ca成像,我们发现V1神经元对S(紫外)和M(绿)视蛋白分离刺激有反应,根据V1中的视网膜位置,颜色偏好略有偏差。这与视网膜视蛋白的分布一致。在细胞水平上,对S和M视蛋白分离刺激的偏好混合在一个数百微米的局部区域。这些结果表明,颜色信息的功能组织在局部是混合的,但根据小鼠V1中的视网膜位置略有偏差。