Literature DB >> 22225247

Single x-ray transmission system for bone mineral density determination.

Daniel Jimenez-Mendoza1, Diego G Espinosa-Arbelaez, Astrid L Giraldo-Betancur, Margarita I Hernandez-Urbiola, Damian Vargas-Vazquez, Mario E Rodriguez-Garcia.   

Abstract

Bones are the support of the body. They are composed of many inorganic compounds and other organic materials that all together can be used to determine the mineral density of the bones. The bone mineral density is a measure index that is widely used as an indicator of the health of the bone. A typical manner to evaluate the quality of the bone is a densitometry study; a dual x-ray absorptiometry system based study that has been widely used to assess the mineral density of some animals' bones. However, despite the success stories of utilizing these systems in many different applications, it is a very expensive method that requires frequent calibration processes to work properly. Moreover, its usage in small species applications (e.g., rodents) has not been quite demonstrated yet. Following this argument, it is suggested that there is a need for an instrument that would perform such a task in a more reliable and economical manner. Therefore, in this paper we explore the possibility to develop a new, affordable, and reliable single x-ray absorptiometry system. The method consists of utilizing a single x-ray source, an x-ray image sensor, and a computer platform that all together, as a whole, will allow us to calculate the mineral density of the bone. Utilizing an x-ray transmission theory modified through a version of the Lambert-Beer law equation, a law that expresses the relationship among the energy absorbed, the thickness, and the absorption coefficient of the sample at the x-rays wavelength to calculate the mineral density of the bone can be advantageous. Having determined the parameter equation that defines the ratio of the pixels in radiographies and the bone mineral density [measured in mass per unit of area (g/cm(2))], we demonstrated the utility of our novel methodology by calculating the mineral density of Wistar rats' femur bones.

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Year:  2011        PMID: 22225247     DOI: 10.1063/1.3666864

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  4 in total

1.  Relation between phalangeal bone mineral density and radiographic knee osteoarthritis: a cross-sectional study.

Authors:  Zhen-Han Deng; Chao Zeng; Yu-Sheng Li; Tuo Yang; Hui Li; Jie Wei; Guang-Hua Lei
Journal:  BMC Musculoskelet Disord       Date:  2016-02-11       Impact factor: 2.362

2.  Bone Mineral Density, Mechanical, Microstructural Properties and Mineral Content of the Femur in Growing Rats Fed with Cactus Opuntia ficus indica (L.) Mill. (Cactaceae) Cladodes as Calcium Source in Diet.

Authors:  Ezequiel Hernández-Becerra; Elsa Gutiérrez-Cortez; Alicia Del Real; Alejandra Rojas-Molina; Mario Rodríguez-García; Efraín Rubio; Michelle Quintero-García; Isela Rojas-Molina
Journal:  Nutrients       Date:  2017-02-04       Impact factor: 5.717

3.  Digital radiography as an alternative method in the evaluation of bone density in uremic rats.

Authors:  Bárbara Bruna Abreu de Castro; Wander Barros Carmo; Roberto Sotto Maior Fortes Oliveira; Vera Maria Peters; Vanda Jorgetti; Melani Ribeiro Custodio; Helady Sanders-Pinheiro
Journal:  J Bras Nefrol       Date:  2019-08-08

4.  Calcium Bioavailability of Opuntia ficus-indica Cladodes in an Ovariectomized Rat Model of Postmenopausal Bone Loss.

Authors:  Michelle Quintero-García; Elsa Gutiérrez-Cortez; Alejandra Rojas-Molina; Monsserrat Mendoza-Ávila; Alicia Del Real; Efraín Rubio; Daniel Jiménez-Mendoza; Isela Rojas-Molina
Journal:  Nutrients       Date:  2020-05-15       Impact factor: 5.717

  4 in total

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