Assessment of image co-registration accuracy for frameless gamma knife surgery.

Image co-registration is used in frameless gamma knife radiosurgery (GKSRS) to assign a stereotactic coordinate system and verify patient setup before irradiation. The accuracy of co-registration with cone beam computed tomography (CBCT) images of a Gamma Knife IconTM (GK Icon) was assessed, and the...

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Main Authors: Hyun-Tai Chung, Jeong Hun Kim, Jin Wook Kim, Sun Ha Paek, Dong Gyu Kim, Kook Jin Chun, Tae Hoon Kim, Yong Kyun Kim
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5834193?pdf=render
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spelling doaj-d8cbb064a6164156b95add2650bcbc312020-11-24T21:09:43ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-01133e019380910.1371/journal.pone.0193809Assessment of image co-registration accuracy for frameless gamma knife surgery.Hyun-Tai ChungJeong Hun KimJin Wook KimSun Ha PaekDong Gyu KimKook Jin ChunTae Hoon KimYong Kyun KimImage co-registration is used in frameless gamma knife radiosurgery (GKSRS) to assign a stereotactic coordinate system and verify patient setup before irradiation. The accuracy of co-registration with cone beam computed tomography (CBCT) images of a Gamma Knife IconTM (GK Icon) was assessed, and the effects of the region of co-registration (ROC) were studied. CBCT-to-CBCT co-registration is used for patient setup verification, and its accuracy was examined by co-registering CBCT images taken at various configurations with a reference CBCT series. The accuracy of stereotactic coordinate assignment was investigated by co-registering stereotactic CT images with CBCT images taken at various configurations. An anthropomorphic phantom was used, and the coordinates of fifteen landmarks inside the phantom were measured. The co-registration accuracy between stereotactic magnetic resonance (MR) and CBCT images was evaluated using images from forty-one patients. The positions of the anterior and posterior commissures were measured in both a fiducial marker-based system and a co-registered system. To assess the effects of MR image distortions, co-registration was performed with four different ranges, and the accuracy of the results was compared. Co-registration between CBCT images gave a mean three-dimensional deviation of 0.2 ± 0.1 mm. The co-registration of stereotactic CT images with CBCT images produced a mean deviation of 0.5 ± 0.2 mm. The co-registration of MR images with CBCT images resulted in the smallest three-dimensional difference (0.8 ± 0.3 mm) when a co-registration region covering the skull base area was applied. The image co-registration errors in frameless GKSRS were similar to the imaging errors of frame-based GKSRS. The lower portion of the patient's head, including the base of the skull, is recommended for the ROC.http://europepmc.org/articles/PMC5834193?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hyun-Tai Chung
Jeong Hun Kim
Jin Wook Kim
Sun Ha Paek
Dong Gyu Kim
Kook Jin Chun
Tae Hoon Kim
Yong Kyun Kim
spellingShingle Hyun-Tai Chung
Jeong Hun Kim
Jin Wook Kim
Sun Ha Paek
Dong Gyu Kim
Kook Jin Chun
Tae Hoon Kim
Yong Kyun Kim
Assessment of image co-registration accuracy for frameless gamma knife surgery.
PLoS ONE
author_facet Hyun-Tai Chung
Jeong Hun Kim
Jin Wook Kim
Sun Ha Paek
Dong Gyu Kim
Kook Jin Chun
Tae Hoon Kim
Yong Kyun Kim
author_sort Hyun-Tai Chung
title Assessment of image co-registration accuracy for frameless gamma knife surgery.
title_short Assessment of image co-registration accuracy for frameless gamma knife surgery.
title_full Assessment of image co-registration accuracy for frameless gamma knife surgery.
title_fullStr Assessment of image co-registration accuracy for frameless gamma knife surgery.
title_full_unstemmed Assessment of image co-registration accuracy for frameless gamma knife surgery.
title_sort assessment of image co-registration accuracy for frameless gamma knife surgery.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2018-01-01
description Image co-registration is used in frameless gamma knife radiosurgery (GKSRS) to assign a stereotactic coordinate system and verify patient setup before irradiation. The accuracy of co-registration with cone beam computed tomography (CBCT) images of a Gamma Knife IconTM (GK Icon) was assessed, and the effects of the region of co-registration (ROC) were studied. CBCT-to-CBCT co-registration is used for patient setup verification, and its accuracy was examined by co-registering CBCT images taken at various configurations with a reference CBCT series. The accuracy of stereotactic coordinate assignment was investigated by co-registering stereotactic CT images with CBCT images taken at various configurations. An anthropomorphic phantom was used, and the coordinates of fifteen landmarks inside the phantom were measured. The co-registration accuracy between stereotactic magnetic resonance (MR) and CBCT images was evaluated using images from forty-one patients. The positions of the anterior and posterior commissures were measured in both a fiducial marker-based system and a co-registered system. To assess the effects of MR image distortions, co-registration was performed with four different ranges, and the accuracy of the results was compared. Co-registration between CBCT images gave a mean three-dimensional deviation of 0.2 ± 0.1 mm. The co-registration of stereotactic CT images with CBCT images produced a mean deviation of 0.5 ± 0.2 mm. The co-registration of MR images with CBCT images resulted in the smallest three-dimensional difference (0.8 ± 0.3 mm) when a co-registration region covering the skull base area was applied. The image co-registration errors in frameless GKSRS were similar to the imaging errors of frame-based GKSRS. The lower portion of the patient's head, including the base of the skull, is recommended for the ROC.
url http://europepmc.org/articles/PMC5834193?pdf=render
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