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不对称视网膜生长:视网膜定位机制调控的证据。

Asymmetric retinal growth: evidence for regulation by a retinotopic mechanism.

作者信息

Cameron D A

机构信息

Department of Biomedical Engineering, Boston University, MA 02215, USA.

出版信息

Vis Neurosci. 1996 May-Jun;13(3):493-500. doi: 10.1017/s0952523800008166.

Abstract

Adult teleost retinas grow throughout life, in part by the addition of cells from an encircling, proliferative neuroepithelium. In some species, this proliferative growth is asymmetric around the retina. The present study evaluated two hypotheses regarding asymmetric proliferative growth in adult green sunfish retina: (1) the generation of rod photoreceptors in central retina from proliferative rod precursor cells is also asymmetric; and (2) asymmetric proliferative growth patterns are regulated by mechanisms that are organized retinotopically and are independent of body-axis coordinates. In all retinas examined, rod precursor distribution and rod production were asymmetric, and both were in coarse spatial register with the asymmetric pattern of cellular addition at the retinal margin. In adult eyes that were surgically rotated, the asymmetric patterns of proliferative growth were present and appropriate for the retina's prerotation orientation. The results suggest that proliferative growth at both marginal and central adult sunfish retina is asymmetric, and that these asymmetric growth patterns are regulated by a retinotopic mechanism that is independent of body-axis coordinates.

摘要

成年硬骨鱼的视网膜终生生长,部分原因是来自周围增殖性神经上皮的细胞不断增加。在某些物种中,这种增殖性生长在视网膜周围是不对称的。本研究评估了关于成年绿太阳鱼视网膜不对称增殖性生长的两个假设:(1)中央视网膜中由增殖性视杆前体细胞产生视杆光感受器的过程也是不对称的;(2)不对称增殖性生长模式受视网膜拓扑组织且独立于体轴坐标的机制调控。在所有检查的视网膜中,视杆前体细胞分布和视杆产生都是不对称的,并且两者在空间上与视网膜边缘细胞添加的不对称模式大致对应。在手术旋转的成年眼中,增殖性生长的不对称模式仍然存在,且与视网膜旋转前的方向相适应。结果表明,成年太阳鱼视网膜边缘和中央的增殖性生长都是不对称的,并且这些不对称生长模式受一种独立于体轴坐标的视网膜拓扑机制调控。

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