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Aged rats learn Morris Water maze using non-spatial search strategies evidenced by a parameter-based algorithm

Spatial learning and memory are used by all individuals who need to move in a space. Morris water maze (MWM) is an accepted method for its evaluation in murine models and has many protocols, ranging from the classic parameters of latency, distance, and number of crossings to the platform zone, to ot...

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Autores principales: Villarreal-Silva, Eliud Enrique, González-Navarro, Alejandro Rafael, Salazar-Ybarra, Rodolfo Amador, Quiroga-García, Oscar, Cruz-Elizondo, Miguel Angel de Jesús, García-García, Aracely, Rodríguez-Rocha, Humberto, Morales-Gómez, Jesús Alberto, Quiroga-Garza, Alejandro, Elizondo-Omaña, Rodrigo Enrique, de León, Ángel Raymundo Martínez-Ponce, Guzmán-López, Santos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: De Gruyter 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9250324/
https://www.ncbi.nlm.nih.gov/pubmed/35855084
http://dx.doi.org/10.1515/tnsci-2022-0221
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author Villarreal-Silva, Eliud Enrique
González-Navarro, Alejandro Rafael
Salazar-Ybarra, Rodolfo Amador
Quiroga-García, Oscar
Cruz-Elizondo, Miguel Angel de Jesús
García-García, Aracely
Rodríguez-Rocha, Humberto
Morales-Gómez, Jesús Alberto
Quiroga-Garza, Alejandro
Elizondo-Omaña, Rodrigo Enrique
de León, Ángel Raymundo Martínez-Ponce
Guzmán-López, Santos
author_facet Villarreal-Silva, Eliud Enrique
González-Navarro, Alejandro Rafael
Salazar-Ybarra, Rodolfo Amador
Quiroga-García, Oscar
Cruz-Elizondo, Miguel Angel de Jesús
García-García, Aracely
Rodríguez-Rocha, Humberto
Morales-Gómez, Jesús Alberto
Quiroga-Garza, Alejandro
Elizondo-Omaña, Rodrigo Enrique
de León, Ángel Raymundo Martínez-Ponce
Guzmán-López, Santos
author_sort Villarreal-Silva, Eliud Enrique
collection PubMed
description Spatial learning and memory are used by all individuals who need to move in a space. Morris water maze (MWM) is an accepted method for its evaluation in murine models and has many protocols, ranging from the classic parameters of latency, distance, and number of crossings to the platform zone, to other more complex methods involving computerized trajectory analysis. Algorithm-based SS analysis is an alternative that enriches traditional classic parameters. We developed a non-computerized parameter-based Search Strategy Algorithm (SSA), to classify strategies and detect changes in spatial memory and learning. For this, our algorithm was validated using young and aged rats, evaluated by two observers who classified the trajectories of the rats based on the effectiveness, localization, and precision to reach the platform. SSA is classified into 10 categories, classified by effectiveness, initial direction, and precision. Traditional measurements were unable to show significant differences in the learning process. However, significant differences were identified in SSA. Young rats used a direct search strategy (SS), while aged rats preferred indirect ones. The number of platform crossings was the only variable to show the difference in the intermediate probe trial. The parameter-based algorithm represents an alternative to the computerized SS methods to analyze the spatial memory and learning process in young and age rats. We validate the use of SSA as an alternative to computerized SS analysis spatial learning acquisition. We demonstrated that aged rats had the ability to learn spatial memory tasks using different search strategies. The use of SSA resulted in a reliable and reproducible method to analyze MWM protocols.
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spelling pubmed-92503242022-07-18 Aged rats learn Morris Water maze using non-spatial search strategies evidenced by a parameter-based algorithm Villarreal-Silva, Eliud Enrique González-Navarro, Alejandro Rafael Salazar-Ybarra, Rodolfo Amador Quiroga-García, Oscar Cruz-Elizondo, Miguel Angel de Jesús García-García, Aracely Rodríguez-Rocha, Humberto Morales-Gómez, Jesús Alberto Quiroga-Garza, Alejandro Elizondo-Omaña, Rodrigo Enrique de León, Ángel Raymundo Martínez-Ponce Guzmán-López, Santos Transl Neurosci Research Article Spatial learning and memory are used by all individuals who need to move in a space. Morris water maze (MWM) is an accepted method for its evaluation in murine models and has many protocols, ranging from the classic parameters of latency, distance, and number of crossings to the platform zone, to other more complex methods involving computerized trajectory analysis. Algorithm-based SS analysis is an alternative that enriches traditional classic parameters. We developed a non-computerized parameter-based Search Strategy Algorithm (SSA), to classify strategies and detect changes in spatial memory and learning. For this, our algorithm was validated using young and aged rats, evaluated by two observers who classified the trajectories of the rats based on the effectiveness, localization, and precision to reach the platform. SSA is classified into 10 categories, classified by effectiveness, initial direction, and precision. Traditional measurements were unable to show significant differences in the learning process. However, significant differences were identified in SSA. Young rats used a direct search strategy (SS), while aged rats preferred indirect ones. The number of platform crossings was the only variable to show the difference in the intermediate probe trial. The parameter-based algorithm represents an alternative to the computerized SS methods to analyze the spatial memory and learning process in young and age rats. We validate the use of SSA as an alternative to computerized SS analysis spatial learning acquisition. We demonstrated that aged rats had the ability to learn spatial memory tasks using different search strategies. The use of SSA resulted in a reliable and reproducible method to analyze MWM protocols. De Gruyter 2022-07-01 /pmc/articles/PMC9250324/ /pubmed/35855084 http://dx.doi.org/10.1515/tnsci-2022-0221 Text en © 2022 Eliud Enrique Villarreal-Silva et al., published by De Gruyter https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License.
spellingShingle Research Article
Villarreal-Silva, Eliud Enrique
González-Navarro, Alejandro Rafael
Salazar-Ybarra, Rodolfo Amador
Quiroga-García, Oscar
Cruz-Elizondo, Miguel Angel de Jesús
García-García, Aracely
Rodríguez-Rocha, Humberto
Morales-Gómez, Jesús Alberto
Quiroga-Garza, Alejandro
Elizondo-Omaña, Rodrigo Enrique
de León, Ángel Raymundo Martínez-Ponce
Guzmán-López, Santos
Aged rats learn Morris Water maze using non-spatial search strategies evidenced by a parameter-based algorithm
title Aged rats learn Morris Water maze using non-spatial search strategies evidenced by a parameter-based algorithm
title_full Aged rats learn Morris Water maze using non-spatial search strategies evidenced by a parameter-based algorithm
title_fullStr Aged rats learn Morris Water maze using non-spatial search strategies evidenced by a parameter-based algorithm
title_full_unstemmed Aged rats learn Morris Water maze using non-spatial search strategies evidenced by a parameter-based algorithm
title_short Aged rats learn Morris Water maze using non-spatial search strategies evidenced by a parameter-based algorithm
title_sort aged rats learn morris water maze using non-spatial search strategies evidenced by a parameter-based algorithm
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9250324/
https://www.ncbi.nlm.nih.gov/pubmed/35855084
http://dx.doi.org/10.1515/tnsci-2022-0221
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