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Estimating Center of Rotation of Single-Photon Emission Computerized Tomography Projection Images Using MATLAB for Standardization and Calibration

OBJECTIVE: The objective of the study was to develop a Personal Computer (PC) based tool to estimate the center of rotation (COR) offsets from COR projection datasets using methods mentioned in IAEA-TECDOC-602. MATERIALS AND METHODS: Twenty-four COR studies were acquired on Discovery NM 630 Dual hea...

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Autores principales: Pandey, Anil Kumar, Chaudhary, Jagrati, Kaur, Gagandeep, Yadav, Priya, Sharma, Param Dev, Patel, Chetan, Kumar, Rakesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10171755/
https://www.ncbi.nlm.nih.gov/pubmed/37180194
http://dx.doi.org/10.4103/ijnm.ijnm_110_22
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author Pandey, Anil Kumar
Chaudhary, Jagrati
Kaur, Gagandeep
Yadav, Priya
Sharma, Param Dev
Patel, Chetan
Kumar, Rakesh
author_facet Pandey, Anil Kumar
Chaudhary, Jagrati
Kaur, Gagandeep
Yadav, Priya
Sharma, Param Dev
Patel, Chetan
Kumar, Rakesh
author_sort Pandey, Anil Kumar
collection PubMed
description OBJECTIVE: The objective of the study was to develop a Personal Computer (PC) based tool to estimate the center of rotation (COR) offsets from COR projection datasets using methods mentioned in IAEA-TECDOC-602. MATERIALS AND METHODS: Twenty-four COR studies were acquired on Discovery NM 630 Dual head gamma camera fitted with parallel hole collimator, and COR offsets were estimated with the software available at the terminal for processing a COR study. These COR projection images were exported in DICOM. A MATLAB script (software program) was written to estimate COR offset using Method A (using opposite pair of projections) and Method B (using curve fitting method) as mentioned in IAEA-TECDOC-602. Our program read the COR study (in DICOM) and estimated COR offsets using Method A and Method B. The accuracy of the program was verified using simulated projection dataset of a point source object acquired at 6° interval in the range of 0°–360° angle. Bland Altman plot was used for analyzing the agreement between the COR offsets estimated using (1) Method A and Method B mentioned in IAEA-TECDOC-602, and (2) Our program and vendor program available at Discovery NM 630 acquisition terminal. RESULTS: On simulated data, offset from center of gravity (COG) in X direction (COGX) and COG in Y direction (COGY) estimated using Method A was constant (same) at each pair of angles while using Method B, it was found to be in the range (−2 × 10(−10), 1 × 10(−10)) which is negligible. Most of the differences (23 out of 24) between the result of Method A and Method B, and between the results of our program and vendor program was found to be within 95% confidence interval (mean ± 1.96 standard deviation). CONCLUSIONS: Our PC-based tool to estimate COR offsets from COR projection datasets using methods mentioned in IAEA-TECDOC-602 was found to be accurate and provides results in agreement with vendor's program. It can be used as an independent tool to estimate COR offset for standardization and calibration purposes.
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spelling pubmed-101717552023-05-11 Estimating Center of Rotation of Single-Photon Emission Computerized Tomography Projection Images Using MATLAB for Standardization and Calibration Pandey, Anil Kumar Chaudhary, Jagrati Kaur, Gagandeep Yadav, Priya Sharma, Param Dev Patel, Chetan Kumar, Rakesh Indian J Nucl Med Original Article OBJECTIVE: The objective of the study was to develop a Personal Computer (PC) based tool to estimate the center of rotation (COR) offsets from COR projection datasets using methods mentioned in IAEA-TECDOC-602. MATERIALS AND METHODS: Twenty-four COR studies were acquired on Discovery NM 630 Dual head gamma camera fitted with parallel hole collimator, and COR offsets were estimated with the software available at the terminal for processing a COR study. These COR projection images were exported in DICOM. A MATLAB script (software program) was written to estimate COR offset using Method A (using opposite pair of projections) and Method B (using curve fitting method) as mentioned in IAEA-TECDOC-602. Our program read the COR study (in DICOM) and estimated COR offsets using Method A and Method B. The accuracy of the program was verified using simulated projection dataset of a point source object acquired at 6° interval in the range of 0°–360° angle. Bland Altman plot was used for analyzing the agreement between the COR offsets estimated using (1) Method A and Method B mentioned in IAEA-TECDOC-602, and (2) Our program and vendor program available at Discovery NM 630 acquisition terminal. RESULTS: On simulated data, offset from center of gravity (COG) in X direction (COGX) and COG in Y direction (COGY) estimated using Method A was constant (same) at each pair of angles while using Method B, it was found to be in the range (−2 × 10(−10), 1 × 10(−10)) which is negligible. Most of the differences (23 out of 24) between the result of Method A and Method B, and between the results of our program and vendor program was found to be within 95% confidence interval (mean ± 1.96 standard deviation). CONCLUSIONS: Our PC-based tool to estimate COR offsets from COR projection datasets using methods mentioned in IAEA-TECDOC-602 was found to be accurate and provides results in agreement with vendor's program. It can be used as an independent tool to estimate COR offset for standardization and calibration purposes. Wolters Kluwer - Medknow 2023 2023-02-24 /pmc/articles/PMC10171755/ /pubmed/37180194 http://dx.doi.org/10.4103/ijnm.ijnm_110_22 Text en Copyright: © 2023 Indian Journal of Nuclear Medicine https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Original Article
Pandey, Anil Kumar
Chaudhary, Jagrati
Kaur, Gagandeep
Yadav, Priya
Sharma, Param Dev
Patel, Chetan
Kumar, Rakesh
Estimating Center of Rotation of Single-Photon Emission Computerized Tomography Projection Images Using MATLAB for Standardization and Calibration
title Estimating Center of Rotation of Single-Photon Emission Computerized Tomography Projection Images Using MATLAB for Standardization and Calibration
title_full Estimating Center of Rotation of Single-Photon Emission Computerized Tomography Projection Images Using MATLAB for Standardization and Calibration
title_fullStr Estimating Center of Rotation of Single-Photon Emission Computerized Tomography Projection Images Using MATLAB for Standardization and Calibration
title_full_unstemmed Estimating Center of Rotation of Single-Photon Emission Computerized Tomography Projection Images Using MATLAB for Standardization and Calibration
title_short Estimating Center of Rotation of Single-Photon Emission Computerized Tomography Projection Images Using MATLAB for Standardization and Calibration
title_sort estimating center of rotation of single-photon emission computerized tomography projection images using matlab for standardization and calibration
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10171755/
https://www.ncbi.nlm.nih.gov/pubmed/37180194
http://dx.doi.org/10.4103/ijnm.ijnm_110_22
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