New Mathematical Model for the Surface Area of the Left Ventricle by the Truncated Prolate Spheroid

The main aim of this study was the formula application of the superficial area of a truncated prolate spheroid (TPS) in Cartesian coordinates in obtaining a cardiac parameter that is not so much discussed in literature, related to the left ventricle (LV) surface area of the human heart, by age and s...

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Main Authors: José Sérgio Domingues, Marcos de Paula Vale, Carlos Barreira Martinez
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:The Scientific World Journal
Online Access:http://dx.doi.org/10.1155/2017/6981515
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spelling doaj-e940d1d71691405c967d23f69b90f8062020-11-25T01:14:20ZengHindawi LimitedThe Scientific World Journal2356-61401537-744X2017-01-01201710.1155/2017/69815156981515New Mathematical Model for the Surface Area of the Left Ventricle by the Truncated Prolate SpheroidJosé Sérgio Domingues0Marcos de Paula Vale1Carlos Barreira Martinez2Department of Mechanical Engineering, Federal University of Minas Gerais (UFMG), Belo Horizonte, MG, BrazilCardiovascular Surgery, Nossa Senhora das Dores Hospital, Itabira, MG, BrazilDepartment of Mechanical Engineering, Federal University of Minas Gerais (UFMG), Belo Horizonte, MG, BrazilThe main aim of this study was the formula application of the superficial area of a truncated prolate spheroid (TPS) in Cartesian coordinates in obtaining a cardiac parameter that is not so much discussed in literature, related to the left ventricle (LV) surface area of the human heart, by age and sex. First we obtain a formula for the area of a TPS. Then a simple mathematical model of association of the axes measures of a TPS with the axes of the LV is built. Finally real values of the average dimensions of the humans LV are used to measure surface areas approximations of this heart chamber. As a result, the average superficial area of LV for normal patients is obtained and it is observed that the percentage differences of areas between men and women and their consecutive age groups are constant. A strong linear correlation between the obtained areas and the ventricular volumes normalized by the body areas was observed. The obtained results indicate that the superficial area of the LV, besides enabling a greater knowledge of the geometrical characteristics of the human LV, may be used as one of the normality cardiac verification criteria and be useful for medical and biological applications.http://dx.doi.org/10.1155/2017/6981515
collection DOAJ
language English
format Article
sources DOAJ
author José Sérgio Domingues
Marcos de Paula Vale
Carlos Barreira Martinez
spellingShingle José Sérgio Domingues
Marcos de Paula Vale
Carlos Barreira Martinez
New Mathematical Model for the Surface Area of the Left Ventricle by the Truncated Prolate Spheroid
The Scientific World Journal
author_facet José Sérgio Domingues
Marcos de Paula Vale
Carlos Barreira Martinez
author_sort José Sérgio Domingues
title New Mathematical Model for the Surface Area of the Left Ventricle by the Truncated Prolate Spheroid
title_short New Mathematical Model for the Surface Area of the Left Ventricle by the Truncated Prolate Spheroid
title_full New Mathematical Model for the Surface Area of the Left Ventricle by the Truncated Prolate Spheroid
title_fullStr New Mathematical Model for the Surface Area of the Left Ventricle by the Truncated Prolate Spheroid
title_full_unstemmed New Mathematical Model for the Surface Area of the Left Ventricle by the Truncated Prolate Spheroid
title_sort new mathematical model for the surface area of the left ventricle by the truncated prolate spheroid
publisher Hindawi Limited
series The Scientific World Journal
issn 2356-6140
1537-744X
publishDate 2017-01-01
description The main aim of this study was the formula application of the superficial area of a truncated prolate spheroid (TPS) in Cartesian coordinates in obtaining a cardiac parameter that is not so much discussed in literature, related to the left ventricle (LV) surface area of the human heart, by age and sex. First we obtain a formula for the area of a TPS. Then a simple mathematical model of association of the axes measures of a TPS with the axes of the LV is built. Finally real values of the average dimensions of the humans LV are used to measure surface areas approximations of this heart chamber. As a result, the average superficial area of LV for normal patients is obtained and it is observed that the percentage differences of areas between men and women and their consecutive age groups are constant. A strong linear correlation between the obtained areas and the ventricular volumes normalized by the body areas was observed. The obtained results indicate that the superficial area of the LV, besides enabling a greater knowledge of the geometrical characteristics of the human LV, may be used as one of the normality cardiac verification criteria and be useful for medical and biological applications.
url http://dx.doi.org/10.1155/2017/6981515
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