Literature DB >> 27370148

4D-CT scans reveal reduced magnitude of respiratory liver motion achieved by different abdominal compression plate positions in patients with intrahepatic tumors undergoing helical tomotherapy.

Yong Hu1, Yong-Kang Zhou1, Yi-Xing Chen1, Shi-Ming Shi1, Zhao-Chong Zeng1.   

Abstract

PURPOSE: While abdominal compression (AC) can be used to reduce respiratory liver motion in patients receiving helical tomotherapy for hepatocellular carcinoma, the nature and extent of this effect is not well described. The purpose of this study was to evaluate the changes in magnitude of three-dimensional liver motion with abdominal compression using four-dimensional (4D) computed tomography (CT) images of several plate positions.
METHODS: From January 2012 to October 2015, 72 patients with intrahepatic carcinoma and divided into four groups underwent 4D-CT scans to assess respiratory liver motion. Of the 72 patients, 19 underwent abdominal compression of the cephalic area between the subxiphoid and umbilicus (group A), 16 underwent abdominal compression of the caudal region between the subxiphoid area and the umbilicus (group B), 11 patients underwent abdominal compression of the caudal umbilicus (group C), and 26 patients remained free breathing (group D). 4D-CT images were sorted into ten-image series, according to the respiratory phase from the end inspiration to the end expiration, and then transferred to treatment planning software. All liver contours were drawn by a single physician and confirmed by a second physician. Liver relative coordinates were automatically generated to calculate the liver respiratory motion in different axial directions to compile the 10 ten contours into a single composite image. Differences in respiratory liver motion were assessed with a one-way analysis of variance test of significance.
RESULTS: The average respiratory liver motion in the Y axial direction was 4.53 ± 1.16, 7.56 ± 1.30, 9.95 ± 2.32, and 9.53 ± 2.62 mm in groups A, B, C, and D, respectively, with a significant change among the four groups (p < 0.001). Abdominal compression was most effective in group A (compression plate on the subxiphoid area), with liver displacement being 2.53 ± 0.93, 4.53 ± 1.16, and 2.14 ± 0.92 mm on the X-, Y-, and Z-axes, respectively. There was no significant difference in respiratory liver motion between group C (displacement: 3.23 ± 1.47, 9.95 ± 2.32, and 2.92 ± 1.10 mm on the X-, Y-, and Z-axes, respectively) and group D (displacement: 3.35 ± 1.55, 9.53 ± 2.62, and 3.35 ± 1.73 mm on the X-, Y-, and Z-axes, respectively). Abdominal compression was least effective in group C (compression on caudal umbilicus), with liver motion in this group similar to that of free-breathing patients (group D).
CONCLUSIONS: 4D-CT scans revealed significant liver motion control via abdominal compression of the subxiphoid area; however, this control of liver motion was not observed with compression of the caudal umbilicus. The authors, therefore, recommend compression of the subxiphoid area in patients undergoing external radiotherapy for intrahepatic carcinoma.

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Year:  2016        PMID: 27370148     DOI: 10.1118/1.4953190

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  9 in total

1.  Segmental analysis of respiratory liver motion in patients with and without a history of abdominal surgery.

Authors:  Yasuhiro Shimizu; Shigeyuki Takamatsu; Kazutaka Yamamoto; Yoshikazu Maeda; Makoto Sasaki; Hiroyasu Tamamura; Sayuri Bou; Tomoyasu Kumano; Toshifumi Gabata
Journal:  Jpn J Radiol       Date:  2018-06-20       Impact factor: 2.374

2.  Consensus on Stereotactic Body Radiation Therapy for Small-Sized Hepatocellular Carcinoma at the 7th Asia-Pacific Primary Liver Cancer Expert Meeting.

Authors:  Zhao-Chong Zeng; Jinsil Seong; Sang Min Yoon; Jason Chia-Hsien Cheng; Ka-On Lam; Ann-Shing Lee; Ada Law; Jian-Ying Zhang; Yong Hu
Journal:  Liver Cancer       Date:  2017-08-30       Impact factor: 11.740

3.  Guidelines for Diagnosis and Treatment of Primary Liver Cancer in China (2017 Edition).

Authors:  Jian Zhou; Hui-Chuan Sun; Zheng Wang; Wen-Ming Cong; Jian-Hua Wang; Meng-Su Zeng; Jia-Mei Yang; Ping Bie; Lian-Xin Liu; Tian-Fu Wen; Guo-Hong Han; Mao-Qiang Wang; Rui-Bao Liu; Li-Gong Lu; Zheng-Gang Ren; Min-Shan Chen; Zhao-Chong Zeng; Ping Liang; Chang-Hong Liang; Min Chen; Fu-Hua Yan; Wen-Ping Wang; Yuan Ji; Wen-Wu Cheng; Chao-Liu Dai; Wei-Dong Jia; Ya-Ming Li; Ye-Xiong Li; Jun Liang; Tian-Shu Liu; Guo-Yue Lv; Yi-Lei Mao; Wei-Xin Ren; Hong-Cheng Shi; Wen-Tao Wang; Xiao-Ying Wang; Bao-Cai Xing; Jian-Ming Xu; Jian-Yong Yang; Ye-Fa Yang; Sheng-Long Ye; Zheng-Yu Yin; Bo-Heng Zhang; Shui-Jun Zhang; Wei-Ping Zhou; Ji-Ye Zhu; Rong Liu; Ying-Hong Shi; Yong-Sheng Xiao; Zhi Dai; Gao-Jun Teng; Jian-Qiang Cai; Wei-Lin Wang; Jia-Hong Dong; Qiang Li; Feng Shen; Shu-Kui Qin; Jia Fan
Journal:  Liver Cancer       Date:  2018-06-14       Impact factor: 11.740

4.  Guidelines for the Diagnosis and Treatment of Hepatocellular Carcinoma (2019 Edition).

Authors:  Jian Zhou; Huichuan Sun; Zheng Wang; Wenming Cong; Jianhua Wang; Mengsu Zeng; Weiping Zhou; Ping Bie; Lianxin Liu; Tianfu Wen; Guohong Han; Maoqiang Wang; Ruibao Liu; Ligong Lu; Zhengang Ren; Minshan Chen; Zhaochong Zeng; Ping Liang; Changhong Liang; Min Chen; Fuhua Yan; Wenping Wang; Yuan Ji; Jingping Yun; Dingfang Cai; Yongjun Chen; Wenwu Cheng; Shuqun Cheng; Chaoliu Dai; Wenzhi Guo; Baojin Hua; Xiaowu Huang; Weidong Jia; Yaming Li; Yexiong Li; Jun Liang; Tianshu Liu; Guoyue Lv; Yilei Mao; Tao Peng; Weixin Ren; Hongcheng Shi; Guoming Shi; Kaishan Tao; Wentao Wang; Xiaoying Wang; Zhiming Wang; Bangde Xiang; Baocai Xing; Jianming Xu; Jiamei Yang; Jianyong Yang; Yefa Yang; Yunke Yang; Shenglong Ye; Zhengyu Yin; Bixiang Zhang; Boheng Zhang; Leida Zhang; Shuijun Zhang; Ti Zhang; Yongfu Zhao; Honggang Zheng; Jiye Zhu; Kangshun Zhu; Rong Liu; Yinghong Shi; Yongsheng Xiao; Zhi Dai; Gaojun Teng; Jianqiang Cai; Weilin Wang; Xiujun Cai; Qiang Li; Feng Shen; Shukui Qin; Jiahong Dong; Jia Fan
Journal:  Liver Cancer       Date:  2020-11-11       Impact factor: 11.740

5.  Magnitude and influencing factors of respiration-induced liver motion during abdominal compression in patients with intrahepatic tumors.

Authors:  Yong Hu; Yong-Kang Zhou; Yi-Xing Chen; Zhao-Chong Zeng
Journal:  Radiat Oncol       Date:  2017-01-10       Impact factor: 3.481

6.  Experience with an abdominal compression band for radiotherapy of upper abdominal tumours.

Authors:  Rebecca Van Gelder; Shelley Wong; Andrew Le; Alexander Podreka; Adam Briggs; Carol Haddad; Nicholas Hardcastle
Journal:  J Med Radiat Sci       Date:  2017-12-05

7.  Proton Beam Therapy without Fiducial Markers Using Four-Dimensional CT Planning for Large Hepatocellular Carcinomas.

Authors:  Satoshi Shibata; Shigeyuki Takamatsu; Kazutaka Yamamoto; Miu Mizuhata; Sayuri Bou; Yoshitaka Sato; Mariko Kawamura; Satoko Asahi; Yuji Tameshige; Yoshikazu Maeda; Makoto Sasaki; Tomoyasu Kumano; Satoshi Kobayashi; Hiroyasu Tamamura; Toshifumi Gabata
Journal:  Cancers (Basel)       Date:  2018-03-14       Impact factor: 6.639

Review 8.  Intensity-modulated radiotherapy for hepatocellular carcinoma: dosimetric and clinical results.

Authors:  Sun Hyun Bae; Won Il Jang; Hee Chul Park
Journal:  Oncotarget       Date:  2017-07-13

9.  Helical IMRT-Based Stereotactic Body Radiation Therapy Using an Abdominal Compression Technique and Modified Fractionation Regimen for Small Hepatocellular Carcinoma.

Authors:  Yi-Xing Chen; Yuan Zhuang; Ping Yang; Jia Fan; Jian Zhou; Yong Hu; Wen-Chao Zhu; Jing Sun; Zhao-Chong Zeng
Journal:  Technol Cancer Res Treat       Date:  2020 Jan-Dec
  9 in total

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