Log in
Language:

WEKO3

  • Top
  • Ranking
To
lat lon distance
To

Field does not validate



Index Link

Index Tree

Please input email address.

WEKO

One fine body…

WEKO

One fine body…

Item

  1. Thesis
  2. Year of 2025

Of Movement and Mice: A Study of Movement Variability Using Marker-based 3D Motion Capture and Mathematical Representations of Locomotion on a Treadmill

https://doi.org/10.15102/0002000863
https://doi.org/10.15102/0002000863
95adf09f-5ffe-4340-ab42-0a29901413f7
Name / File License Actions
LakshmipriyaSwaminathanFulltext.pdf LakshmipriyaSwaminathanFulltext.pdf (36.5 MB)
license.icon
LakshmipriyaSwaminathanExamAbstract.pdf LakshmipriyaSwaminathanExamAbstract.pdf (48 KB)
Item type 学位論文 / Thesis or Dissertation(1)
PubDate 2025-05-15
Title
Title マウスとその動き:マーカーベースの3Dモーションキャプチャとトレッドミル運動の数学的表現を用いた運動変動の研究
Language ja
Title
Title Of Movement and Mice: A Study of Movement Variability Using Marker-based 3D Motion Capture and Mathematical Representations of Locomotion on a Treadmill
Language en
Language
Language eng
Resource Type
Resource Type Identifier http://purl.org/coar/resource_type/c_db06
Resource Type doctoral thesis
Identifier Registration
Identifier Registration 10.15102/0002000863
Identifier Registration Type JaLC
Access Right
Access Rights open access
Access Rights URI http://purl.org/coar/access_right/c_abf2
Author Lakshmipriya Swaminathan

× Lakshmipriya Swaminathan

en Lakshmipriya Swaminathan


Search repository
Abstract
Description Type Abstract
Description Locomotion is an important output of the central nervous system (CNS) and an essential component of many behaviours. The inherent variability of animal locomotory movements is the key to understanding how living things move so well. Most studies asses mouse locomotion using central metrics such as step-length, speed, angular excursions, and phase differences of limbs. The limitation of such approaches is that by describing variability as just the degree of spread around some measure of centrality we lose the ability to look at the dynamics. Additionally, there is mounting evidence that variability encodes dynamic signatures that are key to understanding both the function and dysfunction of the CNS. Few studies examine the whole body of the animal as it moves, particularly in tasks that involve more natural movements. Fewer still, that do this in all three spatial dimensions (3D). However, locomotion is a whole bodied movement, and most organisms move in 3D. Therefore, there is a need to study whole bodied movements in 3D, with sufficient spatio-temporal resolution to analyse their inherent variability. This entails using observational methods capable of capturing natural movements alongside analytical methods to interpret the data. In this thesis, I present my work on obtaining mathematical representations of voluntary treadmill locomotion of mice. I use a novel marker assisted 3D motion capture system, adapted for mice, to obtain a 30 dimensional trajectory of the whole body as they run unrestrained on a treadmill set at different speeds. I use principal component analysis to get a basis set of vectors that represent the changes in the body configuration of the mice during treadmill locomotion. Additionally, I use delay embedding techniques to untangle non-stationarities in the data to uncover the different classes of body movement cycles. This approach enables the characterisation of the whole body of the mouse as it locomotes on a treadmill and sets the stage for systematically studying the effect of pharmacological perturbations and different neurological conditions on movement.
Language en
Exam Date
2025-03-19
Degree Conferral Date
Date Granted 2025-04-30
Degree
Degree Name Doctor of Philosophy
Degree Referral Number
Dissertation Number 甲第191号
Degree Conferrral Institution
Degree Grantor Name Identifier Scheme kakenhi
Degree Grantor Name Identifier 38005
Degree Grantor Name Okinawa Institute of Science and Technology Graduate University
Version Format
Version Type VoR
Version Type Resource http://purl.org/coar/version/c_970fb48d4fbd8a85
Copyright Information
Rights © 2025 The Author
Back
0
views
See details
Views

Versions

Ver.1 2025-05-15 04:52:30.205475
Show All versions

Share

Mendeley Twitter Facebook Print Addthis

Cite as

Export

OAI-PMH
  • OAI-PMH JPCOAR 2.0
  • OAI-PMH JPCOAR 1.0
  • OAI-PMH DublinCore
  • OAI-PMH DDI
Other Formats
  • JSON
  • BIBTEX

Confirm


Powered by WEKO3


Powered by WEKO3