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在视网膜神经节细胞实验中测量的猫眼图像质量。

Image quality of the cat eye measured during retinal ganglion cell experiments.

作者信息

Bonds A B, Enroth-Cugell C, Pinto L H

出版信息

J Physiol. 1972 Jan;220(2):383-401. doi: 10.1113/jphysiol.1972.sp009713.

Abstract
  1. The modulation transfer function (MTF) of the dioptrics of fifteen cat eyes was determined. The aerial image, formed by the eye of a standard object (a 0.5-1.0 degrees annulus), was photographed. The transmission of the film negative was measured with a scanning microdensitometer to yield the light distribution within the aerial image. Correcting for the double passage, this experimentally determined light distribution and the known object light distribution were used to obtain the MTF, applying Fourier methods. Each MTF was used to calculate the light distribution within the retinal image of stimuli of various geometry used in experiments on retinal ganglion cells in the same eye.2. When the eye was equipped with an artificial pupil of the same size as that used in the neurophysiological experiments (4.0-4.8 mm diam.) the MTF had fallen to 0.5 at 2.43 c/deg. When the pupil was removed the MTF had fallen to 0.5 at a much lower spatial frequency (1.0 c/deg). This shows that even when one uses an artificial pupil too large to provide optimal image quality there is a vast improvement over using no pupil.3. These image quality measurements were prompted by the need to know the actual stimulus image in experiments on the functional organization of the receptive field, a need exemplified in this paper by a few specific physiological results. The full neurophysiological results appear in the next two papers.
摘要
  1. 测定了15只猫眼屈光系统的调制传递函数(MTF)。拍摄了由标准物体(一个0.5 - 1.0度的环)的眼睛形成的空间图像。用扫描显微密度计测量底片的透射率,以得出空间图像内的光分布。校正双重通过后,利用傅里叶方法,将实验确定的光分布和已知的物体光分布用于获得MTF。每个MTF都用于计算同一只眼睛视网膜神经节细胞实验中使用的各种几何形状刺激的视网膜图像内的光分布。

  2. 当眼睛配备与神经生理学实验中使用的相同大小的人工瞳孔(直径4.0 - 4.8毫米)时,MTF在2.43周/度时降至0.5。当去除瞳孔时,MTF在低得多的空间频率(1.0周/度)时降至0.5。这表明,即使使用的人工瞳孔过大而无法提供最佳图像质量,但与不使用瞳孔相比仍有巨大改进。

  3. 这些图像质量测量是由于在感受野功能组织实验中需要了解实际刺激图像而引发的,本文通过一些具体的生理结果举例说明了这种需求。完整的神经生理学结果将在接下来的两篇论文中呈现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df5c/1331709/a4b5d06eab73/jphysiol01005-0131-a.jpg

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