Fourier Transform To Explain The Process Of Computed Tomography

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Computed tomography (CT) is a breakthrough technology used in medicine for diagnostic diseases. The same technique is used in other areas, such as aerospace chemistry, Radio astronomy, etc. The main objective of the CT is to reconstruct the internal part of an object without having to open it as a n...

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Detalles Bibliográficos
Autores: Chávez Ramírez, Edwin, Carbajal Peña, Efraín, Yauri Luque, Victoriano, Loli Prudencio, Cristian Amador
Formato: artículo
Fecha de Publicación:2017
Institución:Universidad Nacional Mayor de San Marcos
Repositorio:Revistas - Universidad Nacional Mayor de San Marcos
Lenguaje:español
OAI Identifier:oai:ojs.csi.unmsm:article/13751
Enlace del recurso:https://revistasinvestigacion.unmsm.edu.pe/index.php/matema/article/view/13751
Nivel de acceso:acceso abierto
Materia:Tomografía computarizada
transformada de Fourier
Problema inverso
Computed tomography
Fourier transformation
inverse problem
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spelling Fourier Transform To Explain The Process Of Computed TomographyLa Transformada de Fourier para explicar el proceso de Tomografía ComputarizadaChávez Ramírez, EdwinCarbajal Peña, EfraínYauri Luque, VictorianoLoli Prudencio, Cristian AmadorTomografía computarizadatransformada de FourierProblema inversoComputed tomographyFourier transformationinverse problemComputed tomography (CT) is a breakthrough technology used in medicine for diagnostic diseases. The same technique is used in other areas, such as aerospace chemistry, Radio astronomy, etc. The main objective of the CT is to reconstruct the internal part of an object without having to open it as a non-destructive test. To achieve this purpose, the CT uses the attention that X-rays undergo through this object with the information, the inner part of the object is reconstructed, that is to say the CT is an inverse problem.In this article uses the Fourier transform for the reconstruction of the internal part, for it is directly part of a continuous model, representing the density at the point (x, y) of a section, with a function p = p(x, y); and even though p is not required to be continuous, the Fourier method is more efficient and a better, more regular result is obtained p.La tomografía computarizada (TC) es un gran avance tecnológico utilizado en medicina para diagnósticar enfermedades. La misma técnica es usada en otras áreas, tales como química aeroespacial, radioastronomia, etc. El principal objetivo de la TC es reconstruir la parte interna de un objeto sin tener la necesidad de abrirlo, dicho procedimiento es conocido como un ensayo no destructivo. Para lograr este propósito, la TC usa la atenución que sufren los rayos X al atravesar por el objeto con dicha información, se reconstruye la parte interna del objeto, es decir la TC se trata de un problema inverso.En este artículo se utiliza con la transformada de Fourier para la reconstrucción de la parte interna, para ello se parte directamente de un modelo continuo, representando la densidad en el punto (x, y) de una sección considerada, con una función p = p(x, y); y aunque no se requiera que p sea continua, el método de Fourier es más eficiente y se conseguirá un mejor resultado cuanto más regular sea p.Universidad Nacional Mayor de San Marcos, Facultad de Ciencias Matemáticas2017-09-04info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://revistasinvestigacion.unmsm.edu.pe/index.php/matema/article/view/1375110.15381/pes.v20i1.13751Pesquimat; Vol. 20 No. 1 (2017); 77-92Pesquimat; Vol. 20 Núm. 1 (2017); 77-921609-84391560-912X10.15381/pes.v20i1reponame:Revistas - Universidad Nacional Mayor de San Marcosinstname:Universidad Nacional Mayor de San Marcosinstacron:UNMSMspahttps://revistasinvestigacion.unmsm.edu.pe/index.php/matema/article/view/13751/12200Derechos de autor 2017 Edwin Chávez Ramírez, Efraín Carbajal Peña, Victoriano Yauri Luque, Cristian Amador Loli Prudenciohttps://creativecommons.org/licenses/by-nc-sa/4.0info:eu-repo/semantics/openAccessoai:ojs.csi.unmsm:article/137512017-09-04T21:54:35Z
dc.title.none.fl_str_mv Fourier Transform To Explain The Process Of Computed Tomography
La Transformada de Fourier para explicar el proceso de Tomografía Computarizada
title Fourier Transform To Explain The Process Of Computed Tomography
spellingShingle Fourier Transform To Explain The Process Of Computed Tomography
Chávez Ramírez, Edwin
Tomografía computarizada
transformada de Fourier
Problema inverso
Computed tomography
Fourier transformation
inverse problem
title_short Fourier Transform To Explain The Process Of Computed Tomography
title_full Fourier Transform To Explain The Process Of Computed Tomography
title_fullStr Fourier Transform To Explain The Process Of Computed Tomography
title_full_unstemmed Fourier Transform To Explain The Process Of Computed Tomography
title_sort Fourier Transform To Explain The Process Of Computed Tomography
dc.creator.none.fl_str_mv Chávez Ramírez, Edwin
Carbajal Peña, Efraín
Yauri Luque, Victoriano
Loli Prudencio, Cristian Amador
author Chávez Ramírez, Edwin
author_facet Chávez Ramírez, Edwin
Carbajal Peña, Efraín
Yauri Luque, Victoriano
Loli Prudencio, Cristian Amador
author_role author
author2 Carbajal Peña, Efraín
Yauri Luque, Victoriano
Loli Prudencio, Cristian Amador
author2_role author
author
author
dc.subject.none.fl_str_mv Tomografía computarizada
transformada de Fourier
Problema inverso
Computed tomography
Fourier transformation
inverse problem
topic Tomografía computarizada
transformada de Fourier
Problema inverso
Computed tomography
Fourier transformation
inverse problem
description Computed tomography (CT) is a breakthrough technology used in medicine for diagnostic diseases. The same technique is used in other areas, such as aerospace chemistry, Radio astronomy, etc. The main objective of the CT is to reconstruct the internal part of an object without having to open it as a non-destructive test. To achieve this purpose, the CT uses the attention that X-rays undergo through this object with the information, the inner part of the object is reconstructed, that is to say the CT is an inverse problem.In this article uses the Fourier transform for the reconstruction of the internal part, for it is directly part of a continuous model, representing the density at the point (x, y) of a section, with a function p = p(x, y); and even though p is not required to be continuous, the Fourier method is more efficient and a better, more regular result is obtained p.
publishDate 2017
dc.date.none.fl_str_mv 2017-09-04
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 https://revistasinvestigacion.unmsm.edu.pe/index.php/matema/article/view/13751
10.15381/pes.v20i1.13751
url https://revistasinvestigacion.unmsm.edu.pe/index.php/matema/article/view/13751
identifier_str_mv 10.15381/pes.v20i1.13751
dc.language.none.fl_str_mv spa
language spa
dc.relation.none.fl_str_mv https://revistasinvestigacion.unmsm.edu.pe/index.php/matema/article/view/13751/12200
dc.rights.none.fl_str_mv https://creativecommons.org/licenses/by-nc-sa/4.0
info:eu-repo/semantics/openAccess
rights_invalid_str_mv https://creativecommons.org/licenses/by-nc-sa/4.0
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidad Nacional Mayor de San Marcos, Facultad de Ciencias Matemáticas
publisher.none.fl_str_mv Universidad Nacional Mayor de San Marcos, Facultad de Ciencias Matemáticas
dc.source.none.fl_str_mv Pesquimat; Vol. 20 No. 1 (2017); 77-92
Pesquimat; Vol. 20 Núm. 1 (2017); 77-92
1609-8439
1560-912X
10.15381/pes.v20i1
reponame:Revistas - Universidad Nacional Mayor de San Marcos
instname:Universidad Nacional Mayor de San Marcos
instacron:UNMSM
instname_str Universidad Nacional Mayor de San Marcos
instacron_str UNMSM
institution UNMSM
reponame_str Revistas - Universidad Nacional Mayor de San Marcos
collection Revistas - Universidad Nacional Mayor de San Marcos
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repository.mail.fl_str_mv
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