Replication Data for: Calcium Imaging In Electrically Stimulated Flat-Mounted Retinas

DOI

Retinal prostheses have the ability to generate visual perceptions. To advance the development of new prostheses, ex vivo methods are needed to test devices before implantation. This article provides a comprehensive protocol for studying calcium activity in the retinal ganglion cell layer when subjected to electrical stimulation.

Matlab, R2021b

Retinal dystrophies are a leading cause of blindness worldwide. Extensive efforts are underway to develop advanced retinal prostheses that can bypass the impaired light-sensing photoreceptor cells in the degenerated retina, aiming to partially restore vision by inducing visual percepts. One common avenue of investigation involves the design and production of implantable devices with a flexible physical structure, housing a high number of electrodes. This enables the efficient and precise generation of visual percepts. However, with each technological advancement, there arises a need for a reliable and manageable ex vivo method to verify the functionality of the device before progressing to in vivo experiments, where factors beyond the device's performance come into play. This article presents a comprehensive protocol for studying calcium activity in the retinal ganglion cell layer (GCL) following electrical stimulation. Specifically, the following steps are outlined: (1) fluorescently labeling the rat retina using genetically encoded calcium indicators, (2) capturing the fluorescence signal using an inverted fluorescence microscope while applying distinct patterns of electrical stimulation, and (3) extracting and analyzing the calcium traces from individual cells within the GCL. By following this procedure, researchers can efficiently test new stimulation protocols prior to conducting in vivo experiments.

Identifier
DOI https://doi.org/10.34810/data1893
Related Identifier IsSupplementTo https://doi.org/10.3791/65705
Metadata Access https://dataverse.csuc.cat/oai?verb=GetRecord&metadataPrefix=oai_datacite&identifier=doi:10.34810/data1893
Provenance
Creator Cunquero, Marina ORCID logo; Marsal, Maria ORCID logo; Castro-Olvera, Gustavo ORCID logo; Loza Alvarez, Pablo ORCID logo
Publisher CORA.Repositori de Dades de Recerca
Contributor Loza- Alvarez, Pablo; Institut de Ciències Fotòniques
Publication Year 2024
Funding Reference Fundació CELLEX ; Fundació Mir-Puig ; Ministerio de Economía y Competitividad MCIN/ AEI/10.13039/501100011033 ; Generalitat de Catalunya CERCA program ; European Comission 871124 ; La Caixa Foundation LCF/HR19/52160003 ; Fondo Social Europeo PRE2020-095721, M.C.)
Rights CC BY-NC-SA 4.0; info:eu-repo/semantics/openAccess; http://creativecommons.org/licenses/by-nc-sa/4.0
OpenAccess true
Contact Loza- Alvarez, Pablo (Fundació Institut de Ciències Fotòniques)
Representation
Resource Type Images; Dataset
Format application/octet-stream; application/pdf; text/plain; image/tiff
Size 402; 290; 418; 434; 458; 330; 370; 362; 530; 306; 282; 354; 346; 314; 77058; 10991; 314678589
Version 1.1
Discipline Life Sciences; Medicine; Natural Sciences; Physics
Spatial Coverage Castelldefels, Catalonia, Spain