An anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles

The aim of this report is to provide essential informations on the control of the movement of a beetle’s hind leg, which is ultimately used create a walking cyborg beetle. The project includes the literature review, anatomical study of the musculature structure of each individual segments of the hin...

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Main Author: Yeong, Jun Hao
Other Authors: Hirotaka Sato
Format: Final Year Project
Language:English
Published: 2015
Subjects:
Online Access:http://hdl.handle.net/10356/64064
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-640642023-03-04T19:30:21Z An anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles Yeong, Jun Hao Hirotaka Sato School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering::Bio-mechatronics The aim of this report is to provide essential informations on the control of the movement of a beetle’s hind leg, which is ultimately used create a walking cyborg beetle. The project includes the literature review, anatomical study of the musculature structure of each individual segments of the hind leg and the electrical stimulation of the muscles of a live beetle. In this project, the primary aim is to control the hind leg motion of the Mecynorrhina Torquata, one of the largest flower beetle in the world. Before the stimulating of the muscles, an anatomy study will be carried out during the dissection process to locate the different muscle groups that control the different segment of the leg. Thereafter, the controlling of the movement of hind leg is achieved through the stimulating of the muscles at an approximate voltage of 0.75V and 100Hz frequency. Upon successful inducing the movement of a segment of the hind leg, reattempting to stimulate the same area will be carried out at a different voltage to test the threshold and limit to induce the same movement. The experimental results shows that, the muscles that control a particular segment of the leg have to reside in the previous segment and the musculature structure in the femur allows greater translating of power during walking as compared to other segments of the hind leg. In addition, the stimulating voltage is directly proportional to the induced response of the leg. The increase of the voltage would result in a quicker response during stimulation. Bachelor of Engineering (Mechanical Engineering) 2015-05-22T07:59:22Z 2015-05-22T07:59:22Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/64064 en Nanyang Technological University 56 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering::Bio-mechatronics
spellingShingle DRNTU::Engineering::Mechanical engineering::Bio-mechatronics
Yeong, Jun Hao
An anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles
description The aim of this report is to provide essential informations on the control of the movement of a beetle’s hind leg, which is ultimately used create a walking cyborg beetle. The project includes the literature review, anatomical study of the musculature structure of each individual segments of the hind leg and the electrical stimulation of the muscles of a live beetle. In this project, the primary aim is to control the hind leg motion of the Mecynorrhina Torquata, one of the largest flower beetle in the world. Before the stimulating of the muscles, an anatomy study will be carried out during the dissection process to locate the different muscle groups that control the different segment of the leg. Thereafter, the controlling of the movement of hind leg is achieved through the stimulating of the muscles at an approximate voltage of 0.75V and 100Hz frequency. Upon successful inducing the movement of a segment of the hind leg, reattempting to stimulate the same area will be carried out at a different voltage to test the threshold and limit to induce the same movement. The experimental results shows that, the muscles that control a particular segment of the leg have to reside in the previous segment and the musculature structure in the femur allows greater translating of power during walking as compared to other segments of the hind leg. In addition, the stimulating voltage is directly proportional to the induced response of the leg. The increase of the voltage would result in a quicker response during stimulation.
author2 Hirotaka Sato
author_facet Hirotaka Sato
Yeong, Jun Hao
format Final Year Project
author Yeong, Jun Hao
author_sort Yeong, Jun Hao
title An anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles
title_short An anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles
title_full An anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles
title_fullStr An anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles
title_full_unstemmed An anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles
title_sort anatomical study to control the movement of a beetle's hind leg through electrical stimulation of muscles
publishDate 2015
url http://hdl.handle.net/10356/64064
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