Cone Visual Function

Cone visual function is the activity of specialized retinal photoreceptors that support color vision, fine spatial detail, and vision in bright conditions. Cones contain wavelength-sensitive opsins; when light activates these pigments, phototransduction changes the cell’s membrane potential and alters neurotransmitter release at synapses with bipolar and horizontal cells. Neural circuits then compare signals from different cone types and transmit visual information through retinal ganglion cells to the brain. Studying cone function helps explain color perception, visual acuity, adaptation to daylight, and disorders such as cone dystrophy and color vision deficiencies, making it important in neuroscience and vision research.

Cone Visual Function - Related Videos

Research

JoVE Journal - Biology

Single-cell Suction Recordings from Mouse Cone Photoreceptors

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Cited by 9 •

2010

We will show how to record flash responses from single mouse cones using a suction electrode.

Transretinal ERG Recordings from Mouse Retina: Rod and Cone Photoresponses

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Cited by 22 •

2012

We describe a relatively simple method of transretinal electroretinogram (ERG) recordings for obtaining rod and cone photoresponses from intact mouse retina. This approach takes advantage of the block of synaptic transmission from photoreceptors to isolate their light responses and record them using field electrodes placed across the isolated flat-mounted retina.

Education

JoVE Science Education - Engineering

Combined SPECT and CT Imaging to Visualize Cardiac Functionality

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2023

Source: Alycia G. Berman, James A. Schaber, and Craig J. Goergen, Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana Here we will demonstrate the fundamentals of single-photon emission computed tomography/computed tomography (SPECT/CT) imaging using mice. The technique involves injecting a radionuclide into a mouse, imaging the animal after it is distributed throughout the body, and then reconstructing the produced images to create a volumetric dataset. This can...

Neuronal Cell Cultures from Aplysia for High-Resolution Imaging of Growth Cones

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Cited by 18 •

2008

Aplysia californica neurons develop large growth cones in culture that are excellent for high-resolution imaging of growth cone motility and guidance. Here, we present a protocol for dissection and plating of Aplysia bag cell neurons as well as for setting up a chamber for live cell imaging.

Labeling F-actin Barbed Ends with Rhodamine-actin in Permeabilized Neuronal Growth Cones

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Cited by 10 •

2011

A method to visualize and quantify F-actin barbed ends in neuronal growth cones is described. After culturing neurons on glass coverslips, cells are permeabilized with a saponin-containing solution. Then, a short incubation with the saponin buffer containing rhodamine-actin incorporates fluorescent actin onto free actin barbed ends.

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