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Optimizing Infrared Camera Resolution for Small Object Detection using Subpixel Rendering and PIFS in Multiresolution Image Analysis

BACKGROUND: Breast cancer screening techniques have been developing rapidly in the field of imaging systems. One of these techniques is thermography, which is an alternative modality for mammography to detect breast lesions. Thermography utilization has been progressively developing as various model...

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Autores principales: E., Poerbaningtyas, R. S., Dradjat, A. T., Endharti, S. P., Sakti, E., Widjajanto, Y., Yueniwati, M. H., Purnomo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shiraz University of Medical Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321399/
https://www.ncbi.nlm.nih.gov/pubmed/32637370
http://dx.doi.org/10.31661/jbpe.v0i0.1197
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author E., Poerbaningtyas
R. S., Dradjat
A. T., Endharti
S. P., Sakti
E., Widjajanto
Y., Yueniwati
M. H., Purnomo
author_facet E., Poerbaningtyas
R. S., Dradjat
A. T., Endharti
S. P., Sakti
E., Widjajanto
Y., Yueniwati
M. H., Purnomo
author_sort E., Poerbaningtyas
collection PubMed
description BACKGROUND: Breast cancer screening techniques have been developing rapidly in the field of imaging systems. One of these techniques is thermography, which is an alternative modality for mammography to detect breast lesions. Thermography utilization has been progressively developing as various models and methods of object processing improvement. Currently, the Fluke TIS20 infrared camera, with a resolution of 320 × 240, has not been used to measure precisely small objects such as early breast cancer lesions. Retrieval and processing of single images lead into imprecise object measurements and false positive results. OBJECTIVE: Problems have been arisen due to the limitations of the camera resolution, object retrieval techniques and suboptimal image processing. The aim of this study was to detect accurately breast cancer lesions in rats, which were induced by carcinogenic compounds. MATERIAL AND METHODS: In this experimental study, development of models was conducted based on increasing image by optimizing the ability of low-resolution infrared (IR) cameras to identify s mall objects precisely. Image pixel density increased by adjusting the distance of the objects from the camera and multiple images of objects gradually shifting were used to measure object dimensions precisely. RESULTS: The results showed that cancerous lesions as small as 1.27 mm could be detected. This method of lesion detection had a sensitivity and specificity of 93% and 77 % respectively. CONCLUSION: Small objects (cancerous lesions) were measured by increasing image resolution through splitting pixels into subpixels and combining several images using Partitioned Iterated Function Systems (PIFS).
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spelling pubmed-73213992020-07-06 Optimizing Infrared Camera Resolution for Small Object Detection using Subpixel Rendering and PIFS in Multiresolution Image Analysis E., Poerbaningtyas R. S., Dradjat A. T., Endharti S. P., Sakti E., Widjajanto Y., Yueniwati M. H., Purnomo J Biomed Phys Eng Original Article BACKGROUND: Breast cancer screening techniques have been developing rapidly in the field of imaging systems. One of these techniques is thermography, which is an alternative modality for mammography to detect breast lesions. Thermography utilization has been progressively developing as various models and methods of object processing improvement. Currently, the Fluke TIS20 infrared camera, with a resolution of 320 × 240, has not been used to measure precisely small objects such as early breast cancer lesions. Retrieval and processing of single images lead into imprecise object measurements and false positive results. OBJECTIVE: Problems have been arisen due to the limitations of the camera resolution, object retrieval techniques and suboptimal image processing. The aim of this study was to detect accurately breast cancer lesions in rats, which were induced by carcinogenic compounds. MATERIAL AND METHODS: In this experimental study, development of models was conducted based on increasing image by optimizing the ability of low-resolution infrared (IR) cameras to identify s mall objects precisely. Image pixel density increased by adjusting the distance of the objects from the camera and multiple images of objects gradually shifting were used to measure object dimensions precisely. RESULTS: The results showed that cancerous lesions as small as 1.27 mm could be detected. This method of lesion detection had a sensitivity and specificity of 93% and 77 % respectively. CONCLUSION: Small objects (cancerous lesions) were measured by increasing image resolution through splitting pixels into subpixels and combining several images using Partitioned Iterated Function Systems (PIFS). Shiraz University of Medical Sciences 2020-06-01 /pmc/articles/PMC7321399/ /pubmed/32637370 http://dx.doi.org/10.31661/jbpe.v0i0.1197 Text en Copyright: © Journal of Biomedical Physics and Engineering http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 Unported License, ( http://creativecommons.org/licenses/by-nc/4.0/ ) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
E., Poerbaningtyas
R. S., Dradjat
A. T., Endharti
S. P., Sakti
E., Widjajanto
Y., Yueniwati
M. H., Purnomo
Optimizing Infrared Camera Resolution for Small Object Detection using Subpixel Rendering and PIFS in Multiresolution Image Analysis
title Optimizing Infrared Camera Resolution for Small Object Detection using Subpixel Rendering and PIFS in Multiresolution Image Analysis
title_full Optimizing Infrared Camera Resolution for Small Object Detection using Subpixel Rendering and PIFS in Multiresolution Image Analysis
title_fullStr Optimizing Infrared Camera Resolution for Small Object Detection using Subpixel Rendering and PIFS in Multiresolution Image Analysis
title_full_unstemmed Optimizing Infrared Camera Resolution for Small Object Detection using Subpixel Rendering and PIFS in Multiresolution Image Analysis
title_short Optimizing Infrared Camera Resolution for Small Object Detection using Subpixel Rendering and PIFS in Multiresolution Image Analysis
title_sort optimizing infrared camera resolution for small object detection using subpixel rendering and pifs in multiresolution image analysis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321399/
https://www.ncbi.nlm.nih.gov/pubmed/32637370
http://dx.doi.org/10.31661/jbpe.v0i0.1197
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