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Reliability of Stereotactic Coordinates of 1.5-Tesla and 3-Tesla MRI in Radiosurgery and Functional Neurosurgery

OBJECTIVE: The aims of this study are to identify interpersonal differences in defining coordinates and to figure out the degree of distortion of the MRI and compare the accuracy between CT, 1.5-tesla (T) and 3.0T MRI. METHODS: We compared coordinates in the CT images defined by 2 neurosurgeons. We...

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Autores principales: Kim, Hae Yu, Lee, Sun-il, Jin, Seong Jin, Jin, Sung-Chul, Kim, Jung Soo, Jeon, Kyoung Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Neurosurgical Society 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4024812/
https://www.ncbi.nlm.nih.gov/pubmed/24851148
http://dx.doi.org/10.3340/jkns.2014.55.3.136
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author Kim, Hae Yu
Lee, Sun-il
Jin, Seong Jin
Jin, Sung-Chul
Kim, Jung Soo
Jeon, Kyoung Dong
author_facet Kim, Hae Yu
Lee, Sun-il
Jin, Seong Jin
Jin, Sung-Chul
Kim, Jung Soo
Jeon, Kyoung Dong
author_sort Kim, Hae Yu
collection PubMed
description OBJECTIVE: The aims of this study are to identify interpersonal differences in defining coordinates and to figure out the degree of distortion of the MRI and compare the accuracy between CT, 1.5-tesla (T) and 3.0T MRI. METHODS: We compared coordinates in the CT images defined by 2 neurosurgeons. We also calculated the errors of 1.5T MRI and those of 3.0T. We compared the errors of the 1.5T with those of the 3.0T. In addition, we compared the errors in each sequence and in each axis. RESULTS: The mean difference in the CT images between the two neurosurgeons was 0.48±0.22 mm. The mean errors of the 1.5T were 1.55±0.48 mm (T1), 0.75±0.38 (T2), and 1.07±0.57 (FLAIR) and those of the 3.0T were 2.35±0.53 (T1), 2.18±0.76 (T2), and 2.16±0.77 (FLAIR). The smallest mean errors out of all the axes were in the x axis : 0.28-0.34 (1.5T) and 0.31-0.52 (3.0T). The smallest errors out of all the MRI sequences were in the T2 : 0.29-0.58 (1.5T) and 0.31-1.85 (3.0T). CONCLUSION: There was no interpersonal difference in running the Gamma Plan® to define coordinates. The errors of the 3.0T were greater than those of the 1.5T, and these errors were not of an acceptable level. The x coordinate error was the smallest and the z coordinate error was the greatest regardless of the MRI sequence. The T2 sequence was the most accurate sequence.
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spelling pubmed-40248122014-05-21 Reliability of Stereotactic Coordinates of 1.5-Tesla and 3-Tesla MRI in Radiosurgery and Functional Neurosurgery Kim, Hae Yu Lee, Sun-il Jin, Seong Jin Jin, Sung-Chul Kim, Jung Soo Jeon, Kyoung Dong J Korean Neurosurg Soc Laboratory Investigation OBJECTIVE: The aims of this study are to identify interpersonal differences in defining coordinates and to figure out the degree of distortion of the MRI and compare the accuracy between CT, 1.5-tesla (T) and 3.0T MRI. METHODS: We compared coordinates in the CT images defined by 2 neurosurgeons. We also calculated the errors of 1.5T MRI and those of 3.0T. We compared the errors of the 1.5T with those of the 3.0T. In addition, we compared the errors in each sequence and in each axis. RESULTS: The mean difference in the CT images between the two neurosurgeons was 0.48±0.22 mm. The mean errors of the 1.5T were 1.55±0.48 mm (T1), 0.75±0.38 (T2), and 1.07±0.57 (FLAIR) and those of the 3.0T were 2.35±0.53 (T1), 2.18±0.76 (T2), and 2.16±0.77 (FLAIR). The smallest mean errors out of all the axes were in the x axis : 0.28-0.34 (1.5T) and 0.31-0.52 (3.0T). The smallest errors out of all the MRI sequences were in the T2 : 0.29-0.58 (1.5T) and 0.31-1.85 (3.0T). CONCLUSION: There was no interpersonal difference in running the Gamma Plan® to define coordinates. The errors of the 3.0T were greater than those of the 1.5T, and these errors were not of an acceptable level. The x coordinate error was the smallest and the z coordinate error was the greatest regardless of the MRI sequence. The T2 sequence was the most accurate sequence. The Korean Neurosurgical Society 2014-03 2014-03-31 /pmc/articles/PMC4024812/ /pubmed/24851148 http://dx.doi.org/10.3340/jkns.2014.55.3.136 Text en Copyright © 2014 The Korean Neurosurgical Society http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Laboratory Investigation
Kim, Hae Yu
Lee, Sun-il
Jin, Seong Jin
Jin, Sung-Chul
Kim, Jung Soo
Jeon, Kyoung Dong
Reliability of Stereotactic Coordinates of 1.5-Tesla and 3-Tesla MRI in Radiosurgery and Functional Neurosurgery
title Reliability of Stereotactic Coordinates of 1.5-Tesla and 3-Tesla MRI in Radiosurgery and Functional Neurosurgery
title_full Reliability of Stereotactic Coordinates of 1.5-Tesla and 3-Tesla MRI in Radiosurgery and Functional Neurosurgery
title_fullStr Reliability of Stereotactic Coordinates of 1.5-Tesla and 3-Tesla MRI in Radiosurgery and Functional Neurosurgery
title_full_unstemmed Reliability of Stereotactic Coordinates of 1.5-Tesla and 3-Tesla MRI in Radiosurgery and Functional Neurosurgery
title_short Reliability of Stereotactic Coordinates of 1.5-Tesla and 3-Tesla MRI in Radiosurgery and Functional Neurosurgery
title_sort reliability of stereotactic coordinates of 1.5-tesla and 3-tesla mri in radiosurgery and functional neurosurgery
topic Laboratory Investigation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4024812/
https://www.ncbi.nlm.nih.gov/pubmed/24851148
http://dx.doi.org/10.3340/jkns.2014.55.3.136
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