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The visual system of the minnow Phoxinus phoxinus with special reference to its relationship in colour change and behaviour.

机译:now鱼Phoxinus phoxinus的视觉系统,特别涉及其颜色变化和行为之间的关系。

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摘要

The anatomy of the retina was studied and counts wore made of the retinal elements. It was found that the rode single and double cones decrease in number centrally and the triple and quadruple cones increase centrally. the visual acuity calculated from the counts do not agree with the acuity figures given by other workers. The dorsal or ventral ports of the retina were removed surgically or destroyed by high intensity light. The ehromatie behaviour of these fish led to the conclusion that the whole of the retina is important for normal chromatic adaptation to white or black baekgmands.The anatomy of the optic tract, diiasma, geniculate complex, and optic tectum are described. The fibres from the optic tractwere traced into the brain. The ability of the fish to adapt chromati-cally after cutting the optic tract and/or the ablation of the optic tectun indicated that the fibres which are important in backgroundadaptation enter the geniculate complex from the retina and from thererun to the tectum. In the tectum the final interpretation of thebackground occurs.The region where the fibres involved in chromatic adaptation pass out of the tectum was identified and the fibres were traced to the medullary centre. This is described. Encephalograms were recored from bipolar electrodes in the optic tectum. The surface ECG amplitude appears to be correlated with the retinal input. Recordings from electrodes implanted at different depths showed frequency changes associated with the tint of the background. A possible hypothesis for the mechanism of the central nervous control of colour change is proposed. The pattern of the locomotory behaviour of normal, blind, and tectal damaged fish in conditions of limited confinement are described and the role of the optic tectum in the control of general and motor behaviour are discussed. It is experimentally demostrated that the optic tectum plays an important role in the control of the mauthner cells of the medulla, and the relationship between the tectum and the Mauthner cells is discussed.
机译:研究了视网膜的解剖结构,并计算了视网膜成分的数量。已经发现,骑乘的单锥和双锥的中心位置减少,而三锥和四锥的中心位置增加。根据计数计算出的视力与其他工人给出的视力数据不一致。手术切除视网膜的背侧或腹侧端口或被高强度光破坏。这些鱼的风湿行为得出的结论是整个视网膜对于正常适应白或黑baekgmands的色彩很重要。描述了视神经束的解剖结构,视差,膝状复合体和视神经支架。来自视束的纤维被追溯到大脑。鱼类在切开视力道和/或消融视神经支配物后在色素上具有适应能力,这表明在背景适应中很重要的纤维从视网膜进入了膝状复合体,并从那里延伸到了支配体。在顶盖中对背景进行了最终解释。确定了涉及色彩适应的纤维从顶盖中穿过的区域,并将这些纤维追溯到髓质中心。描述。脑电图从视神经外层的双极电极记录。表面ECG振幅似乎与视网膜输入相关。来自植入不同深度的电极的记录显示出与背景色有关的频率变化。对于中枢神经控制颜色变化的机制,提出了一个可能的假设。描述了在有限的限制条件下正常,盲目和顶盖受损鱼的运动行为模式,并讨论了视顶盖在控制一般和运动行为中的作用。实验证明,视神经顶盖在髓质mauthner细胞的控制中起着重要作用,并讨论了顶盖与Mauthner细胞之间的关系。

著录项

  • 作者

    Gentle, Michael John.;

  • 作者单位

    University of London, Bedford College (United Kingdom).;

  • 授予单位 University of London, Bedford College (United Kingdom).;
  • 学科 Neurosciences.
  • 学位 Ph.D.
  • 年度 1969
  • 页码 395 p.
  • 总页数 395
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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