Visual Adaptation and Retinal Gain

Visual Adaptation and Retinal Gain
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发表时间:
2002
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通讯作者:
C. Enroth-Cugell
C. Enroth-Cugell
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其他
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作者:
C. Enroth-Cugell

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[S]: 811。史密斯,r.a.(1973)中视对比度敏感度的亮度依赖性变化。[j] .中国生物医学工程学报(英文版)。所以,Y.-T。SHAPLEY, r.m.(1979)外侧膝状核中X和Y细胞的空间特性。脑科学学报。36:533 - 550。SPERLING, G.(1970)视觉适应和对比度检测模型。知觉与心理物理学8:143 157。SPERLING, G.和SONDHI, M.(1968)视觉亮度识别和闪烁检测模型。J. opt。上午58:1133-1145。STEINBERG, r.h.(1971)猫视网膜色素上皮细胞和水平细胞对光的增量反应记录。[j] .中国生物医学工程学报。17(3):391 - 391。STEINBERG, R. H., REID, M.和LACY, P. L.(1973)猫(家猫)视网膜中的视杆细胞和视锥细胞的分布。[j] .中华神经科杂志,2014(4):389 - 398。STEINHARDT, J.(1936)人眼的强度区分。1 . A I/I与强度的关系。生理学报,20(2):559 - 559。STERLING, P.(1983)猫视网膜的微电路。中华神经科学杂志。6:149-185。THmOS, L. N.和WERBLIN, F. S. (1978a)泥斑视网膜中稳定拮抗包围的反应特性。[j] .中国生物医学工程学报,2009(3):379 - 379。THIBOS, L. N.和WERBLIN, F. S. (1978b)泥狗视网膜中旋转风车模式引起的周围拮抗特性。[j] .中国生物医学工程学报(英文版)。THOMAS, J. S.和KOVAR, C. W.(1965)轮廓清晰度对感知亮度的影响。视觉,5:559-571。佟林和格林(1977)大鼠视网膜神经节细胞的适应池和兴奋感受野。视觉,17:12331236。(2004)中央凹空间敏感与稳定视力的关系。视觉,14:101 105。VALETON, m.j.和VAN NORREN, D.(1983)灵长类视锥细胞的光适应:基于细胞外数据的分析。视觉,23:15391547。VICTOR, J. D.和SHAPLEY, R. M.(1979)猫视网膜Y神经节细胞的非线性通路。中国生物医学工程学报,34(2):591 - 591。王晓明,王晓明(2002)猫视网膜神经节细胞的形态类型和中央投射。见:视网膜研究进展(N. Osborne和G. Chader主编)第1卷,第125 - 152页。佩加蒙出版社,牛津。WERBLIN, f.s.(1974)视网膜敏感性的控制。2。外丛状层的横向相互作用。[j] .中国生物医学工程学报,2011,31(6):559 - 567。WERBLIN, f.s.(1977)虎蝾螈视网膜中突触相互作用介导双极反应。见:脊椎动物感光(H. B. Barlow和P. Fatt主编)第2页5 230页。学术出版社,纽约。WERBLIN, F. S.和COPENHAGEN, D. R.(1974)视网膜敏感性的控制。内丛状层的横向相互作用。[j] .中国生物医学工程杂志。WERBLIN, F. S.和DOWLING, J. E.(1969)泥鳅视网膜的组织。I1。细胞内记录。[j] .神经物理学报。WESTHEIMER, G.(1965)暗位视觉中视网膜的空间相互作用。3. 物理学报。181:881894。WHITTLE, P.和CHALLANDS, P. D.(1969)背景亮度对闪光亮度的影响。异象9:10 5 1 110。WILLIAMS, t.s.和GALE, j.g.(1977)对增量阈值函数的批判。异象Res. 17:881 -882。WITKOVSKY, P.(1967)鲤鱼视网膜神经节细胞和电位反应特性的比较。[j] .中国生物医学工程学报。WYSZECKI, G.和STILES, W. S.(1967)色彩科学:概念和方法,定量数据和公式。第212-227页,Wiley,纽约。YOON M.(1972)适应水平对猫视网膜神经节细胞反应模式和敏感性的影响。[j] .中国生物医学工程学报,2011(3):391 - 391。
s, 9: 811. SMITH, R. A. (1973) Luminance dependent changes in mesopic visual contrast sensitivity. J. PhysioL 230: 115-131. So, Y.-T. and SHAPLEY, R. M. (1979) Spatial properties of X and Y cells in the lateral geniculate nucleus. Expl Brain Res. 36: 533550. SPERLING, G. (1970) Model of visual adaptation and contrast detection. Perception & Psychophysics 8:143 157. SPERLING, G. and SONDHI, M. (1968) Model for visual luminance discrimination and flicker detection. J. opt. Soc. Am. 58: 1133-1145. STEINBERG, R. H. (1971) Incremental responses to light recorded from pigment epithelial cells and horizontal cells of the cat retina. J. Physiol. 217:93 110. STEINBERG, R. H., REID, M. and LACY, P. L. (1973) The distribution of rods and cones in the retina of the cat (Felis domesticus). J. comp. Neurol. 148: 229-248. STEINHARDT, J. (1936) Intensity discrimination in the human eye. I. The relation of A I/I to intensity. J. gen. Physiol. 20: 185-209. STERLING, P. (1983) Microcircuitry of the cat retina. A. Rev. Neurosci. 6: 149-185. THmOS, L. N. and WERBLIN, F. S. (1978a) The response properties of the steady antagonistic surround in the mudpuppy retina. J. Physiol. 278: 79 -99 . THIBOS, L. N. and WERBLIN, F. S. (1978b) The properties of surround antagonism elicited by spinning windmill patterns in the mudpuppy retina. J. PhysioL 278: 101 116. THOMAS, J. S. and KOVAR, C. W. (1965) The effect of contour sharpness on perceived brightness. Vision Res. 5: 559-571. TONG, L. and GREEN, D. G. (1977) Adaptation pools and excitation receptive fields of rat retinal ganglion cells. Vision Res. 17: 12331236. TULUNAY-KEESEV, U. and VASSlLEV, A. (1974) Foveal spatial sensitization with stabilized vision. Vision Res. 14: 101 105. VALETON, M. J. and VAN NORREN, D. (1983) Light adaptation of primate cones: an analysis based on extracellular data. Vision Res. 23: 15391547. VICTOR, J. D. and SHAPLEY, R. M. (1979) The nonlinear pathway of Y ganglion cells in the cat retina. J. gen. Physiol. 74 :671-689 . W~,SSLE, H. (1982) Morphological types and central projections of ganglion cells in the cat retina. In: Progress in Retinal Research (N. Osborne and G. Chader, eds) Vol. 1, pp. 125 152. Pergamon Press, Oxford. WERBLIN, F. S. (1974) Control of retinal sensitivity. II. Lateral interactions at the outer plexiform layer. J. gen. Physiol. 63: 6 2 87. WERBLIN, F. S. (1977) Synaptic interactions mediating bipolar response in the retina of the tiger salamander. In: Vertebrate Photoreception (H. B. Barlow and P. Fatt, eds) pp. 2 0 5 230. Academic Press, New York. WERBLIN, F. S. and COPENHAGEN, D. R. (1974) Control of retinal sensitivity, lII. Lateral interactions at the inner plexiform layer. J. gen. Physiol. 63: 8 8 110. WERBLIN, F. S. and DOWLING, J. E. (1969) Organization of the retina of the mudpuppy, Necturus maculosus. I1. Intracellular recording. J. Neurophysiol. 32:339 354. WESTHEIMER, G. (1965) Spatial interaction in the human retina during scotopic vision. 3. Physiol. 181: 881894. WHITTLE, P. and CHALLANDS, P. D. C. (1969) The effect of background luminance on the brightness of flashes. Vision Res. 9:1095 l 110. WILLIAMS, T. S. and GALE, J. G. (1977) A critique of an incremental threshold function. Vision Res. 17:881 -882. WITKOVSKY, P. (1967) A comparison of ganglion cell and Spotential response properties in carp retina. J. Neurophysiol. 30: 546-561. WYSZECKI, G. and STILES, W. S. (1967) Color Science: Concepts and Methods, Quantitative Data and Formulas. pp. 212-227, Wiley, New York. YOON, M. (1972) Influence of adaptation level on response pattern and sensitivity of ganglion cells in the cat's retina. J. Physiol. 221:93 104.