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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Sensitivity of Mammalian Cone Photoreceptors to Infrared Light
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Sensitivity of Mammalian Cone Photoreceptors to Infrared Light

机译:哺乳动物锥形光感受器对红外光的敏感性

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Two-photon vision arises from the perception of pulsed infrared (IR) laser light as color corresponding to approximately half of the laser wavelength. The physical process responsible for two-photon vision in rods has been delineated and verified experimentally only recently. Here, we sought to determine whether IR light can also be perceived by mammalian cone photoreceptors via a similar activation mechanism. To investigate selectively mammalian cone signaling in mice, we used animals with disabled rod signal transduction. We found that, contrary to the expected progressive sensitivity decrease based on the one-photon cone visual pigment spectral template, the sensitivity of mouse cone photoreceptors decreases only up to 800 nm and then increases at 900 nm and 1000 nm. Similarly, in experiments with the parafoveal region of macaque retinas, we found that the spectral sensitivity of primate cones diverged above the predicted one-photon spectral sensitivity template beyond 800 nm. In both cases, efficient detection of IR light was dependent on minimizing the dispersion of the ultrashort light pulses, indicating a non-linear two-photon activation process. Together, our studies demonstrate that mammalian cones can be activated by near IR light by a nonlinear two-photon excitation. Our results pave the way for the creation of a two-photon IR-based ophthalmoscope for the simultaneous imaging and functional testing of human retinas as a novel tool for the diagnosis and treatment of a wide range of visual disorders. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:从脉冲红外(IR)激光的感知是与对应于激光波长的大约一半的颜色的脉冲红外(IR)激光的感知。负责杆中的双光子视觉的物理过程已经删除并仅通过实验验证。在这里,我们寻求通过类似的活化机制确定哺乳动物锥形光感受器是否可以通过类似的活化机制来察觉。为了在小鼠中进行选择性哺乳动物信号传导,我们使用具有残疾杆信号转导的动物。我们发现,与基于单光子锥形视觉颜料光谱模板的预期逐渐敏感性降低相反,小鼠锥形光感受器的敏感性仅降低到800nm,然后在900nm和1000nm处增加。类似地,在用猕猴视网膜的瓣膜腔区域的实验中,我们发现灵长类锥的光谱敏感性在预测的单光子光谱敏感模板上方分散超过800nm。在这两种情况下,有效地检测IR光取决于最小化超短光脉冲的分散,表示非线性双光子激活过程。我们的研究表明,通过非线性双光子激发,可以通过近红外光激活哺乳动物锥体。我们的结果为创建了一种双光子IR的眼镜镜,为人类视网膜的同时成像和功能测试为一种新的诊断和治疗各种视觉障碍的新工具。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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