Optimized CyberKnife Lung Treatment: Effect of Fractionated Tracking Volume Change on Tracking Results

Objectives. To explore the impact of volume change in the fractionated tracking of stereotactic radiotherapy on the results of synchronous, respiratory tracking algorithm using CyberKnife. Methods. A total of 38 lung tumor patients receiving stereotactic radiotherapy at our center from March 2018 to...

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Main Authors: Guo-quan Li, Ye Wang, Meng-jun Qiu, Jing Yang, Zhen-jun Peng, Sheng Zhang, Xiefan Fang, Sheng-li Yang
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Disease Markers
Online Access:http://dx.doi.org/10.1155/2020/9298263
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spelling doaj-d81980776f294b49aea3ad1338d8637c2020-11-25T02:05:15ZengHindawi LimitedDisease Markers0278-02401875-86302020-01-01202010.1155/2020/92982639298263Optimized CyberKnife Lung Treatment: Effect of Fractionated Tracking Volume Change on Tracking ResultsGuo-quan Li0Ye Wang1Meng-jun Qiu2Jing Yang3Zhen-jun Peng4Sheng Zhang5Xiefan Fang6Sheng-li Yang7Cancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, ChinaCancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, ChinaDivision of Gastroenterology, Liyuan Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430077, ChinaCancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, ChinaCancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, ChinaCancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, ChinaCharles River Laboratories, Inc., 6995 Longley Lane, Reno, NV 89511, USACancer Center, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, ChinaObjectives. To explore the impact of volume change in the fractionated tracking of stereotactic radiotherapy on the results of synchronous, respiratory tracking algorithm using CyberKnife. Methods. A total of 38 lung tumor patients receiving stereotactic radiotherapy at our center from March 2018 to October 2019 were counted. Photoshop CS4 image processing software was used to obtain the pixels and the average value of brightness of the tracking volume in the image and calculate the grayscale within the contour of the tracking volume on the real-time X-ray image. At the same time, parameters of the synchronous respiratory tracking algorithm of the fractional CyberKnife were extracted for comparison between the volume of image-guided image tracking and the number of fractions during stereotactic radiotherapy. We also analyzed the relationship between fraction tumor location and characteristics and the calculated results of synchronous respiratory tracking by CyberKnife. Results. There were no significant differences between the first four fractions (p>0.05) for left lung lesions and no significant differences between the first five fractions for right lung lesions (p≥0.05). For peripheral lung cancer, longer fractional treatment led to greater variation in grayscale (G-A: >4 fractions p<0.05), while for central lung cancer, longer fractional treatment led to greater variation in parameters of the synchronous respiratory tracking algorithm (Uncertainty A and Uncertainty B: >4 fractions p<0.05). There was a significant correlation between radiotherapy-graded tumor density and relevant parameters, and the correlation was strong (>0.7, p<0.05). Conclusion. With the increase of treatment fractions, the gray value in the patient tracking volume decreased. Patients of >4 fractions were advised to reevaluate with simulated CT and replan. For tumors with small diameter and low density, the imaging changes of volume should be closely followed during treatment. For left lung and central lung cancer, carefully select the synchronous tracking treatment with 2-view.http://dx.doi.org/10.1155/2020/9298263
collection DOAJ
language English
format Article
sources DOAJ
author Guo-quan Li
Ye Wang
Meng-jun Qiu
Jing Yang
Zhen-jun Peng
Sheng Zhang
Xiefan Fang
Sheng-li Yang
spellingShingle Guo-quan Li
Ye Wang
Meng-jun Qiu
Jing Yang
Zhen-jun Peng
Sheng Zhang
Xiefan Fang
Sheng-li Yang
Optimized CyberKnife Lung Treatment: Effect of Fractionated Tracking Volume Change on Tracking Results
Disease Markers
author_facet Guo-quan Li
Ye Wang
Meng-jun Qiu
Jing Yang
Zhen-jun Peng
Sheng Zhang
Xiefan Fang
Sheng-li Yang
author_sort Guo-quan Li
title Optimized CyberKnife Lung Treatment: Effect of Fractionated Tracking Volume Change on Tracking Results
title_short Optimized CyberKnife Lung Treatment: Effect of Fractionated Tracking Volume Change on Tracking Results
title_full Optimized CyberKnife Lung Treatment: Effect of Fractionated Tracking Volume Change on Tracking Results
title_fullStr Optimized CyberKnife Lung Treatment: Effect of Fractionated Tracking Volume Change on Tracking Results
title_full_unstemmed Optimized CyberKnife Lung Treatment: Effect of Fractionated Tracking Volume Change on Tracking Results
title_sort optimized cyberknife lung treatment: effect of fractionated tracking volume change on tracking results
publisher Hindawi Limited
series Disease Markers
issn 0278-0240
1875-8630
publishDate 2020-01-01
description Objectives. To explore the impact of volume change in the fractionated tracking of stereotactic radiotherapy on the results of synchronous, respiratory tracking algorithm using CyberKnife. Methods. A total of 38 lung tumor patients receiving stereotactic radiotherapy at our center from March 2018 to October 2019 were counted. Photoshop CS4 image processing software was used to obtain the pixels and the average value of brightness of the tracking volume in the image and calculate the grayscale within the contour of the tracking volume on the real-time X-ray image. At the same time, parameters of the synchronous respiratory tracking algorithm of the fractional CyberKnife were extracted for comparison between the volume of image-guided image tracking and the number of fractions during stereotactic radiotherapy. We also analyzed the relationship between fraction tumor location and characteristics and the calculated results of synchronous respiratory tracking by CyberKnife. Results. There were no significant differences between the first four fractions (p>0.05) for left lung lesions and no significant differences between the first five fractions for right lung lesions (p≥0.05). For peripheral lung cancer, longer fractional treatment led to greater variation in grayscale (G-A: >4 fractions p<0.05), while for central lung cancer, longer fractional treatment led to greater variation in parameters of the synchronous respiratory tracking algorithm (Uncertainty A and Uncertainty B: >4 fractions p<0.05). There was a significant correlation between radiotherapy-graded tumor density and relevant parameters, and the correlation was strong (>0.7, p<0.05). Conclusion. With the increase of treatment fractions, the gray value in the patient tracking volume decreased. Patients of >4 fractions were advised to reevaluate with simulated CT and replan. For tumors with small diameter and low density, the imaging changes of volume should be closely followed during treatment. For left lung and central lung cancer, carefully select the synchronous tracking treatment with 2-view.
url http://dx.doi.org/10.1155/2020/9298263
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