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Spatial filter property of retinal bipolar cells under various intensities of background light.

Spatial filter property of retinal bipolar cells under various intensities of background light.
不同强度背景光下视网膜双极细胞的空间滤光特性。
批准号:
07680439
负责人:
UMINO Osamu
金额:
$1.47万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
1995
资助国家:
日本
项目状态:
已结题
起止时间:
1995 至 1997

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中文摘要
翻译
The receptive fields of retinal bipolar cells (BCs) comprise concentrically organizedopponent center and surround regions,indicating a crucial role for BCs in spatial information processing. The purpose of this study is toexamine the central receptive fields and surround receptive fields of BCs under various intensitiesof background lightBC's如何在自然光线环境下使用BCs modify their spatial propertysurround receptive is due to the input from horizontal cells (HCs) Our physiological experiments使用carp retinae showed that HC receptive fields,measured by scanning the tina with a flash of slitshrink after the prolonged background illumination of超过5 min. the spatio-temporal receptivefields of HCs, estimated by applying a light stimuli modulated in both space and tineshrank with time lag,因此,在一个图像后,HC layr to a moving pattern is inhibited. the centralreceptive field of BCs was physiologicaly examined by scanning the retina with a small slitThe results showed that The central receptive field size of BCs was slightly enlarged underthe background illumination,but usually the change of receptive field size was smaller than those of HCs
英文摘要
The receptive fields of retinal bipolar cells (BCs) comprise concentrically organized, opponent center and surround regions, indicating a crucial role for BCs in spatial information processing. The purpose of this study is to examine the central receptive fields and surround receptive fields of BCs under various intensities of background light, and to clarify how the BCs modify their spatial property under natural light environment. The BC's surround receptive is due to the input from horizontal cells (HCs). Our physiological experiments using carp retinae showed that HC receptive fields, measured by scanning the retina with a flash of slit, shrink after the prolonged background illumination of more than 5 min. The spatio-temporal receptive fields of HCs, estimated by applying a light stimuli modulated in both space and tine, shrank with time lag, so that an after image appeared in the HC layr to a moving pattern is inhibited. The central receptive field of BCs was physiologicaly examined by scanning the retina with a small slit (50・ 200 mum). The results showed that the central receptive field size of BCs was slightly enlarged under the background illumination, but usually the change of receptive field size was smaller than those of HCs
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会议论文
Ishikawa, M., Hashimoto, Y., Tonosaki, A.and Sakuragi, S.: "Preference of peanut agglutinin labeling for long-wavelength-sensitive cone photoreceptors in the dace retina" Vision Research. 37. 383-387 (1997)
Ishikawa, M.、Hashimoto, Y.、Tonosaki, A. 和 Sakuragi, S.:“鲮鱼视网膜中长波敏感视锥细胞的花生凝集素标记偏好”视觉研究。
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橋本: "網膜研究に使用された微小電極の変遷" 東京女子医科大学誌. 67. 244-247 (1997)
桥本:“视网膜研究中使用的微电极的变化”东京女子医科大学学报 67. 244-247 (1997)。
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海野修、牛尾友美: "網膜杆体系水平細胞の時空間フィルタ特性" 電子情報通信学会. MBE96-117. 125-132 (1997)
Osamu Unno、Tomomi Ushio:“视网膜杆系统水平细胞的时空过滤特性”MBE96-117(1997)。
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