Cargando…

Scalable Apparatus to Measure Posture and Locomotion (SAMPL): a high-throughput solution to study unconstrained vertical behavior in small animals

Balance and movement are impaired in a wide variety of neurological disorders. Recent advances in behavioral monitoring provide unprecedented access to posture and locomotor kinematics, but without the throughput and scalability necessary to screen candidate genes / potential therapeutics. We presen...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhu, Yunlu, Auer, Franziska, Gelnaw, Hannah, Davis, Samantha N., Hamling, Kyla R., May, Christina E., Ahamed, Hassan, Ringstad, Niels, Nagel, Katherine I., Schoppik, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9881893/
https://www.ncbi.nlm.nih.gov/pubmed/36712122
http://dx.doi.org/10.1101/2023.01.07.523102
_version_ 1784879203389276160
author Zhu, Yunlu
Auer, Franziska
Gelnaw, Hannah
Davis, Samantha N.
Hamling, Kyla R.
May, Christina E.
Ahamed, Hassan
Ringstad, Niels
Nagel, Katherine I.
Schoppik, David
author_facet Zhu, Yunlu
Auer, Franziska
Gelnaw, Hannah
Davis, Samantha N.
Hamling, Kyla R.
May, Christina E.
Ahamed, Hassan
Ringstad, Niels
Nagel, Katherine I.
Schoppik, David
author_sort Zhu, Yunlu
collection PubMed
description Balance and movement are impaired in a wide variety of neurological disorders. Recent advances in behavioral monitoring provide unprecedented access to posture and locomotor kinematics, but without the throughput and scalability necessary to screen candidate genes / potential therapeutics. We present a powerful solution: a Scalable Apparatus to Measure Posture and Locomotion (SAMPL). SAMPL includes extensible imaging hardware and low-cost open-source acquisition software with real-time processing. We first demonstrate that SAMPL’s hardware and acquisition software can acquire data from D. melanogaster, C.elegans, and D. rerio as they move vertically. Next, we leverage SAMPL’s throughput to rapidly (two weeks) gather a new zebrafish dataset. We use SAMPL’s analysis and visualization tools to replicate and extend our current understanding of how zebrafish balance as they navigate through a vertical environment. Next, we discover (1) that key kinematic parameters vary systematically with genetic background, and (2) that such background variation is small relative to the changes that accompany early development. Finally, we simulate SAMPL’s ability to resolve differences in posture or vertical navigation as a function of effect size and data gathered – key data for screens. Taken together, our apparatus, data, and analysis provide a powerful solution for laboratories using small animals to investigate balance and locomotor disorders at scale. More broadly, SAMPL is both an adaptable resource for laboratories looking process videographic measures of behavior in real-time, and an exemplar of how to scale hardware to enable the throughput necessary for screening.
format Online
Article
Text
id pubmed-9881893
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Cold Spring Harbor Laboratory
record_format MEDLINE/PubMed
spelling pubmed-98818932023-01-28 Scalable Apparatus to Measure Posture and Locomotion (SAMPL): a high-throughput solution to study unconstrained vertical behavior in small animals Zhu, Yunlu Auer, Franziska Gelnaw, Hannah Davis, Samantha N. Hamling, Kyla R. May, Christina E. Ahamed, Hassan Ringstad, Niels Nagel, Katherine I. Schoppik, David bioRxiv Article Balance and movement are impaired in a wide variety of neurological disorders. Recent advances in behavioral monitoring provide unprecedented access to posture and locomotor kinematics, but without the throughput and scalability necessary to screen candidate genes / potential therapeutics. We present a powerful solution: a Scalable Apparatus to Measure Posture and Locomotion (SAMPL). SAMPL includes extensible imaging hardware and low-cost open-source acquisition software with real-time processing. We first demonstrate that SAMPL’s hardware and acquisition software can acquire data from D. melanogaster, C.elegans, and D. rerio as they move vertically. Next, we leverage SAMPL’s throughput to rapidly (two weeks) gather a new zebrafish dataset. We use SAMPL’s analysis and visualization tools to replicate and extend our current understanding of how zebrafish balance as they navigate through a vertical environment. Next, we discover (1) that key kinematic parameters vary systematically with genetic background, and (2) that such background variation is small relative to the changes that accompany early development. Finally, we simulate SAMPL’s ability to resolve differences in posture or vertical navigation as a function of effect size and data gathered – key data for screens. Taken together, our apparatus, data, and analysis provide a powerful solution for laboratories using small animals to investigate balance and locomotor disorders at scale. More broadly, SAMPL is both an adaptable resource for laboratories looking process videographic measures of behavior in real-time, and an exemplar of how to scale hardware to enable the throughput necessary for screening. Cold Spring Harbor Laboratory 2023-03-27 /pmc/articles/PMC9881893/ /pubmed/36712122 http://dx.doi.org/10.1101/2023.01.07.523102 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Zhu, Yunlu
Auer, Franziska
Gelnaw, Hannah
Davis, Samantha N.
Hamling, Kyla R.
May, Christina E.
Ahamed, Hassan
Ringstad, Niels
Nagel, Katherine I.
Schoppik, David
Scalable Apparatus to Measure Posture and Locomotion (SAMPL): a high-throughput solution to study unconstrained vertical behavior in small animals
title Scalable Apparatus to Measure Posture and Locomotion (SAMPL): a high-throughput solution to study unconstrained vertical behavior in small animals
title_full Scalable Apparatus to Measure Posture and Locomotion (SAMPL): a high-throughput solution to study unconstrained vertical behavior in small animals
title_fullStr Scalable Apparatus to Measure Posture and Locomotion (SAMPL): a high-throughput solution to study unconstrained vertical behavior in small animals
title_full_unstemmed Scalable Apparatus to Measure Posture and Locomotion (SAMPL): a high-throughput solution to study unconstrained vertical behavior in small animals
title_short Scalable Apparatus to Measure Posture and Locomotion (SAMPL): a high-throughput solution to study unconstrained vertical behavior in small animals
title_sort scalable apparatus to measure posture and locomotion (sampl): a high-throughput solution to study unconstrained vertical behavior in small animals
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9881893/
https://www.ncbi.nlm.nih.gov/pubmed/36712122
http://dx.doi.org/10.1101/2023.01.07.523102
work_keys_str_mv AT zhuyunlu scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT auerfranziska scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT gelnawhannah scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT davissamanthan scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT hamlingkylar scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT maychristinae scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT ahamedhassan scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT ringstadniels scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT nagelkatherinei scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals
AT schoppikdavid scalableapparatustomeasurepostureandlocomotionsamplahighthroughputsolutiontostudyunconstrainedverticalbehaviorinsmallanimals