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Updated: Aug 5, 2026

Patch-clamp Capacitance Measurements and Ca2+ Imaging at Single Nerve Terminals in Retinal Slices
Published on: January 19, 2012
Ultrastructural and Electrophysiological Determination of the Patency of Monkey Cone Outer Segment Membranes
Antonio E Paniagua1, Stefanie Volland1, Gregory S Bryman2
1Department of Ophthalmology and Jules Stein Eye Institute, University of California, Los Angeles, California 90095.
Abstract:
Cone photoreceptors support the high-acuity color vision characteristic of many primates, including humans. In several non-mammalian species, such as amphibians, the light-sensitive disk membranes within cone outer segments (COSs) are fully open to the extracellular space and continuous (patent) with the plasma membrane. In contrast, the extent of such patency in mammalian COSs has remained unresolved. The open disk architecture represents a fundamental distinction from the closed, discrete disks that dominate a rod OS (ROS), with important implications for outer segment renewal and phototransduction. Here, we documented ROS and COS disk patency in the retina of macaque monkeys of both sexes, near the foveal-parafoveal boundary, by 3D ultrastructural analysis, using serial-section electron microscope tomography. The frequency of disk patency was determined at different locations along the entire OS length. It was less in the apical region of both COSs and ROSs, although still evident, even in ROSs. We complemented our 3D ultrastructural assessment of COS disk patency with electrophysiological measurements of whole-cell membrane capacitance. Both methods indicated that only a minority of all COS disk membranes are open, though more than in ROSs. Thus, in contrast to COSs of many lower vertebrates, the majority of monkey COSs are closed, especially distally. Compared with fully open disks, this structural organization should improve the efficiency of disk membrane renewal and may influence aspects of visual signaling.

