Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation

Descripción del Articulo

Background: Transradial amputation, which involves the loss of the upper limb below the elbow, is a reality that deeply affects people's lives. Objective: The research demonstrated the objective of modeling and simulating the movement of the fingers of a prosthesis for adult patients with trans...

Descripción completa

Detalles Bibliográficos
Autores: Zavala Molina, Diego Alonso, Silva Cabrejos, Ricardo Jesús, Murillo Manrique , Margarita Fredesvinda, Rodríguez Bustinza , Ricardo Raúl, Cornejo Aguilar, José Luis, Palomares Orihuela, Ricardo John
Formato: artículo
Fecha de Publicación:2023
Institución:Universidad Ricardo Palma
Repositorio:Revistas - Universidad Ricardo Palma
Lenguaje:español
OAI Identifier:oai:oai.revistas.urp.edu.pe:article/6020
Enlace del recurso:http://revistas.urp.edu.pe/index.php/Perfiles_Ingenieria/article/view/6020
Nivel de acceso:acceso abierto
Materia:prosthesis
amputation
transradial, trajectory, simulation
transradialtrajectory
simulation
prótesis
amputación
transradial
trayectoria
simulación
id REVURP_fce4808a234f3fc342afde8b30290617
oai_identifier_str oai:oai.revistas.urp.edu.pe:article/6020
network_acronym_str REVURP
network_name_str Revistas - Universidad Ricardo Palma
repository_id_str
dc.title.none.fl_str_mv Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation
Modelado Geométrico y Simulación Cinemática de Prótesis de Mano para Pacientes Adultos con Amputación Transradial
title Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation
spellingShingle Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation
Zavala Molina, Diego Alonso
prosthesis
amputation
transradial, trajectory, simulation
transradialtrajectory
simulation
prótesis
amputación
transradial
trayectoria
simulación
title_short Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation
title_full Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation
title_fullStr Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation
title_full_unstemmed Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation
title_sort Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial Amputation
dc.creator.none.fl_str_mv Zavala Molina, Diego Alonso
Silva Cabrejos, Ricardo Jesús
Murillo Manrique , Margarita Fredesvinda
Rodríguez Bustinza , Ricardo Raúl
Cornejo Aguilar, José Luis
Palomares Orihuela, Ricardo John
author Zavala Molina, Diego Alonso
author_facet Zavala Molina, Diego Alonso
Silva Cabrejos, Ricardo Jesús
Murillo Manrique , Margarita Fredesvinda
Rodríguez Bustinza , Ricardo Raúl
Cornejo Aguilar, José Luis
Palomares Orihuela, Ricardo John
author_role author
author2 Silva Cabrejos, Ricardo Jesús
Murillo Manrique , Margarita Fredesvinda
Rodríguez Bustinza , Ricardo Raúl
Cornejo Aguilar, José Luis
Palomares Orihuela, Ricardo John
author2_role author
author
author
author
author
dc.subject.none.fl_str_mv prosthesis
amputation
transradial, trajectory, simulation
transradialtrajectory
simulation
prótesis
amputación
transradial
trayectoria
simulación
topic prosthesis
amputation
transradial, trajectory, simulation
transradialtrajectory
simulation
prótesis
amputación
transradial
trayectoria
simulación
description Background: Transradial amputation, which involves the loss of the upper limb below the elbow, is a reality that deeply affects people's lives. Objective: The research demonstrated the objective of modeling and simulating the movement of the fingers of a prosthesis for adult patients with transradial amputation, to increase their quality of life by allowing them to carry out specific daily activities more easily. Methodology: The morphological analysis and CAD design of the hand was carried out using as a model the hand of a volunteer adult patient with right transradial amputation. Likewise, the CAD design of the 2 DOF thumb was detailed using the SolidWorks Professional engineering software. Then kinematic modeling of the fingers of the hand was carried out using the Denavit – Hartenberg algorithm and the movements of the fingers were simulated using the Matlab engineering software. Results: The initial and final positions of the end of the fingers of the hand, as well as the trajectories during the simulation of hand closure, were obtained. Conclusions: Taking measurements from a patient maximizes the possibility of implementing a functional prototype. Kinematic modeling allows simulating the trajectories of the fingers of the hand with the Matlab software.
publishDate 2023
dc.date.none.fl_str_mv 2023-12-30
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.none.fl_str_mv http://revistas.urp.edu.pe/index.php/Perfiles_Ingenieria/article/view/6020
10.31381/perfilesingenieria.v19i20.6020
url http://revistas.urp.edu.pe/index.php/Perfiles_Ingenieria/article/view/6020
identifier_str_mv 10.31381/perfilesingenieria.v19i20.6020
dc.language.none.fl_str_mv spa
language spa
dc.relation.none.fl_str_mv http://revistas.urp.edu.pe/index.php/Perfiles_Ingenieria/article/view/6020/9799
http://revistas.urp.edu.pe/index.php/Perfiles_Ingenieria/article/view/6020/10048
dc.rights.none.fl_str_mv Derechos de autor 2024 Ricardo John Palomares Orihuela, Diego Zavala Molina
https://creativecommons.org/licenses/by/4.0/
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Derechos de autor 2024 Ricardo John Palomares Orihuela, Diego Zavala Molina
https://creativecommons.org/licenses/by/4.0/
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
text/html
dc.publisher.none.fl_str_mv Universidad Ricardo Palma
publisher.none.fl_str_mv Universidad Ricardo Palma
dc.source.none.fl_str_mv Engineering Profiles; Vol. 19 No. 20 (2023): Perfiles de Ingeniería (july-december) 2023; 179-200
Perfiles de Ingeniería; Vol. 19 Núm. 20 (2023): Perfiles de Ingeniería (julio-diciembre) 2023; 179-200
2519-5719
1996-6660
10.31381/perfilesingenieria.v20i20
reponame:Revistas - Universidad Ricardo Palma
instname:Universidad Ricardo Palma
instacron:URP
instname_str Universidad Ricardo Palma
instacron_str URP
institution URP
reponame_str Revistas - Universidad Ricardo Palma
collection Revistas - Universidad Ricardo Palma
repository.name.fl_str_mv
repository.mail.fl_str_mv
_version_ 1807382146910781440
spelling Geometric Modeling and Kinematic Simulation of Hand Prosthesis for Adult Patients with Transradial AmputationModelado Geométrico y Simulación Cinemática de Prótesis de Mano para Pacientes Adultos con Amputación TransradialZavala Molina, Diego AlonsoSilva Cabrejos, Ricardo JesúsMurillo Manrique , Margarita FredesvindaRodríguez Bustinza , Ricardo RaúlCornejo Aguilar, José Luis Palomares Orihuela, Ricardo Johnprosthesisamputationtransradial, trajectory, simulationtransradialtrajectorysimulationprótesisamputacióntransradialtrayectoriasimulaciónBackground: Transradial amputation, which involves the loss of the upper limb below the elbow, is a reality that deeply affects people's lives. Objective: The research demonstrated the objective of modeling and simulating the movement of the fingers of a prosthesis for adult patients with transradial amputation, to increase their quality of life by allowing them to carry out specific daily activities more easily. Methodology: The morphological analysis and CAD design of the hand was carried out using as a model the hand of a volunteer adult patient with right transradial amputation. Likewise, the CAD design of the 2 DOF thumb was detailed using the SolidWorks Professional engineering software. Then kinematic modeling of the fingers of the hand was carried out using the Denavit – Hartenberg algorithm and the movements of the fingers were simulated using the Matlab engineering software. Results: The initial and final positions of the end of the fingers of the hand, as well as the trajectories during the simulation of hand closure, were obtained. Conclusions: Taking measurements from a patient maximizes the possibility of implementing a functional prototype. Kinematic modeling allows simulating the trajectories of the fingers of the hand with the Matlab software.Antecedentes: La amputación transradial, que implica la perdida de la extremidad superior por debajo del codo, es una realidad que afecta profundamente la vida de las personas. Objetivo: La investigación consideró como objetivo modelar y simular el movimiento de los dedos de la mano de una prótesis para pacientes adultos con amputación transradial, para incrementar su calidad de vida permitiéndoles realizar con mayor facilidad actividades cotidianas específicas. Metodología: Se realizó el análisis morfológico y diseño CAD de la mano utilizando como modelo la mano de un paciente adulto voluntario con amputación transradial derecha, asimismo, se detalló el diseño CAD del dedo pulgar de 2 GDL utilizando el software de ingeniería SolidWorks Professional. Luego se realizó el modelamiento cinemático de los dedos de la mano utilizando el algoritmo de Denavit – Hartemberg y se simuló los movimientos de los dedos utilizando el software de ingeniería Matlab. Resultados: Se obtuvo las posiciones iniciales y finales del extremo de los dedos de la mano, así como, las trayectorias durante la simulación del cierre de la mano. Conclusiones: La toma de medidas de un paciente maximiza la posibilidad de implementar un prototipo funcional. El modelamiento cinemático permite simular las trayectorias de los dedos de la mano con el software Matlab.Universidad Ricardo Palma2023-12-30info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdftext/htmlhttp://revistas.urp.edu.pe/index.php/Perfiles_Ingenieria/article/view/602010.31381/perfilesingenieria.v19i20.6020Engineering Profiles; Vol. 19 No. 20 (2023): Perfiles de Ingeniería (july-december) 2023; 179-200Perfiles de Ingeniería; Vol. 19 Núm. 20 (2023): Perfiles de Ingeniería (julio-diciembre) 2023; 179-2002519-57191996-666010.31381/perfilesingenieria.v20i20reponame:Revistas - Universidad Ricardo Palmainstname:Universidad Ricardo Palmainstacron:URPspahttp://revistas.urp.edu.pe/index.php/Perfiles_Ingenieria/article/view/6020/9799http://revistas.urp.edu.pe/index.php/Perfiles_Ingenieria/article/view/6020/10048Derechos de autor 2024 Ricardo John Palomares Orihuela, Diego Zavala Molinahttps://creativecommons.org/licenses/by/4.0/info:eu-repo/semantics/openAccessoai:oai.revistas.urp.edu.pe:article/60202024-08-02T14:23:00Z
score 13.987529
Nota importante:
La información contenida en este registro es de entera responsabilidad de la institución que gestiona el repositorio institucional donde esta contenido este documento o set de datos. El CONCYTEC no se hace responsable por los contenidos (publicaciones y/o datos) accesibles a través del Repositorio Nacional Digital de Ciencia, Tecnología e Innovación de Acceso Abierto (ALICIA).