Literature DB >> 21954991

Real-time 4-D radiotherapy for lung cancer.

Hiroki Shirato1, Rikiya Onimaru, Masayori Ishikawa, Jun-ichi Kaneko, Tsuguhide Takeshima, Kenta Mochizuki, Shinichi Shimizu, Kikuo Umegaki.   

Abstract

Respiratory motion considerably influences dose distribution, and thus clinical outcomes in radiotherapy for lung cancer. Breath holding, breath coaching, respiratory gating with external surrogates, and mathematical predicting models all have inevitable uncertainty due to the unpredictable variations of internal tumor motion. The amplitude of the same tumor can vary with standard deviations > 5 mm occurring in 23% of T1-2N0M0 non-small cell lung cancers. Residual motion varied 1-6 mm (95th percentile) for the 40% duty cycle of respiratory gating with external surrogates. The 4-D computed tomography is vulnerable to problems relating to the external surrogates. Real-time 4-D radiotherapy (4DRT), where the temporal changes in anatomy during the delivery of radiotherapy are explicitly considered in real time, is emerging as a new method to reduce these known sources of uncertainty. Fluoroscopic, real-time tumor-tracking technology using internal fiducial markers near the tumor has ± 2 mm accuracy, and has achieved promising clinical results when used with X-ray therapy. Instantaneous irradiation based on real-time verification of internal fiducial markers is considered the minimal requisite for real-time 4DRT of lung cancers at present. Real-time tracking radiotherapy using gamma rays from positron emitters in tumors is in the preclinical research stage, but has been successful in experiments in small animals. Real-time tumor tracking via spot-scanning proton beam therapy has the capability to cure large lung cancers in motion, and is expected to be the next-generation real-time 4DRT.
© 2011 Japanese Cancer Association.

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Year:  2011        PMID: 21954991     DOI: 10.1111/j.1349-7006.2011.02114.x

Source DB:  PubMed          Journal:  Cancer Sci        ISSN: 1347-9032            Impact factor:   6.716


  19 in total

1.  Iso-uncertainty control in an experimental fluoroscopy system.

Authors:  S Siddique; E Fiume; D A Jaffray
Journal:  Med Phys       Date:  2014-12       Impact factor: 4.071

2.  Motion management strategies and technical issues associated with stereotactic body radiotherapy of thoracic and upper abdominal tumors: A review from NRG oncology.

Authors:  Edward D Brandner; Indrin J Chetty; Tawfik G Giaddui; Ying Xiao; M Saiful Huq
Journal:  Med Phys       Date:  2017-04-20       Impact factor: 4.071

3.  Influence of respiration on dose calculation in stereotactic body radiotherapy of the lung.

Authors:  Rie Yamazaki; Rikiya Onimaru; Norio Katoh; Tetsuya Inoue; Takeshi Nishioka; Hiroki Shirato; Hiroyuki Date
Journal:  Radiol Phys Technol       Date:  2014-03-19

4.  Accuracy of Breath-hold CT in Treatment Planning for Lung Stereotactic Ablative Radiotherapy.

Authors:  Dominique Mathieu; Charles Martel; Marie-Pierre Campeau; Édith Filion; David Roberge; Houda Bahig; Toni Vu; Louise Lambert; Karim Boudam; Jean-Francois Carrier
Journal:  Cureus       Date:  2014-12-22

5.  Rapid estimation of 4DCT motion-artifact severity based on 1D breathing-surrogate periodicity.

Authors:  Guang Li; Marshall Caraveo; Jie Wei; Andreas Rimner; Abraham J Wu; Karyn A Goodman; Ellen Yorke
Journal:  Med Phys       Date:  2014-11       Impact factor: 4.071

6.  Application of real-time MRI-guided linear accelerator in stereotactic ablative body radiotherapy for non-small cell lung cancer: one step forward to precise targeting.

Authors:  Hye Jin Kang; Yoo-Kang Kwak; Myungsoo Kim; So Jung Lee
Journal:  J Cancer Res Clin Oncol       Date:  2022-08-30       Impact factor: 4.322

7.  The impact of anatomic tumor location on inter-fraction tumor motion during lung stereotactic body radiation therapy (SBRT).

Authors:  Katelyn M Atkins; Yiyi Chen; David A Elliott; Tulsee S Doshi; Sanja Ognjenovic; Arjun S Vachhani; Monica Kishore; Steven L Primack; Martin Fuss; Mark E Deffebach; Charlotte Dai Kubicky; James A Tanyi
Journal:  J Radiosurg SBRT       Date:  2015

8.  Validation of dose distribution for liver tumors treated with real-time-image gated spot-scanning proton therapy by log data based dose reconstruction.

Authors:  Takahiro Yamada; Seishin Takao; Hidenori Koyano; Hideaki Nihongi; Yusuke Fujii; Shusuke Hirayama; Naoki Miyamoto; Taeko Matsuura; Kikuo Umegaki; Norio Katoh; Isao Yokota; Hiroki Shirato; Shinichi Shimizu
Journal:  J Radiat Res       Date:  2021-07-10       Impact factor: 2.724

9.  Stereotactic body radiotherapy using gated radiotherapy with real-time tumor-tracking for stage I non-small cell lung cancer.

Authors:  Tetsuya Inoue; Norio Katoh; Rikiya Onimaru; Shinichi Shimizu; Kazuhiko Tsuchiya; Ryusuke Suzuki; Jun Sakakibara-Konishi; Naofumi Shinagawa; Satoshi Oizumi; Hiroki Shirato
Journal:  Radiat Oncol       Date:  2013-03-21       Impact factor: 3.481

Review 10.  Roadmap: proton therapy physics and biology.

Authors:  Harald Paganetti; Chris Beltran; Stefan Both; Lei Dong; Jacob Flanz; Keith Furutani; Clemens Grassberger; David R Grosshans; Antje-Christin Knopf; Johannes A Langendijk; Hakan Nystrom; Katia Parodi; Bas W Raaymakers; Christian Richter; Gabriel O Sawakuchi; Marco Schippers; Simona F Shaitelman; B K Kevin Teo; Jan Unkelbach; Patrick Wohlfahrt; Tony Lomax
Journal:  Phys Med Biol       Date:  2021-02-26       Impact factor: 4.174

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