1,903
Views
5
CrossRef citations to date
0
Altmetric
Original Articles: Radiotherapy

A comprehensive motion analysis – consequences for high precision image-guided radiotherapy of esophageal cancer patients

, , , , , , , ORCID Icon, , & show all
Pages 277-284 | Received 18 May 2020, Accepted 25 Oct 2020, Published online: 05 Nov 2020

References

  • Wang J, Lin SH, Dong L, et al. Quantifying the interfractional displacement of the gastroesophageal junction during radiation therapy for esophageal cancer. Int J Radiat Oncol Biol Phys. 2012;83:e273–e280.
  • Ling T, Slater J, Nookala P, et al. Analysis of intensity-modulated radiation therapy (IMRT), proton and 3D conformal radiotherapy (3D-CRT) for reducing perioperative cardiopulmonary complications in esophageal cancer patients. Cancers (Basel). 2014;6:2356–2368.
  • Zhang X, Komaki R, Cox JD, et al. Four-dimensional computed tomography-based treatment planning for intensity-modulated radiation therapy and proton therapy for distal esophageal cancer. Int J Radiat Oncol. 2008;72:278–287.
  • Welsh J, Gomez D, Palmer MB, et al. Intensity-modulated proton therapy further reduces normal tissue exposure during definitive therapy for locally advanced distal esophageal tumors: a dosimetric study. Int J Radiat Oncol Biol Phys. 2011;81:1336–1342.
  • Chang JY, Li H, Zhu XR, et al. Clinical implementation of intensity modulated proton therapy for thoracic malignancies. Int J Radiat Oncol. 2014;90:809–818.
  • Mayer S, Metzger R, Kluth D. The embryology of the diaphragm. Semin Pediatr Surg. 2011;20:161–169.
  • Nason LK, Walker CM, McNeeley MF, et al. Imaging of the Diaphragm: anatomy and Radiographics. 2012;32:E51–71.
  • Balter JM, Dawson LA, Kazanjian S, et al. Determination of ventilatory liver movement via radiographic evaluation of diaphragm position. Int J Radiat Oncol Biol Phys. 2001;51:267–270.
  • Wang W, Li J, Zhang Y, et al. Correlation of primary middle and distal esophageal cancers motion with surrounding tissues using four-dimensional computed tomography. Onco Targets Ther. 2016;9:3705–3710.
  • Allaix ME, Patti MG. Esophagus & diaphragm. In: Doherty GM, editor. Current Diagnosis & Treatment: Surgery. 14th ed. New York (NY): McGraw-Hill Eduation; 2015.
  • Jin P, Hulshof MCCM, van Wieringen N, et al. Interfractional variability of respiration-induced esophageal tumor motion quantified using fiducial markers and four-dimensional cone-beam computed tomography. Radiother Oncol. 2017;124:147–154.
  • Jin P, Hulshof MCCM, De Jong R, et al. Quantification of respiration-induced esophageal tumor motion using fiducial markers and four-dimensional computed tomography. Radiother Oncol. 2016;118:492–497.
  • Liu F, Ng S, Huguet F, et al. Are fiducial markers useful surrogates when using respiratory gating to reduce motion of gastroesophageal junction tumors? Acta Oncol. 2016;55:1040–1046.
  • Wang J-Z, Li J-B, Wang W, et al. Changes in tumour volume and motion during radiotherapy for thoracic oesophageal cancer. Radiother Oncol. 2015;114:201–205.
  • Wang W, Li J, Zhan F, et al. Comparison of patient-specific internal gross tumor volume for radiation treatment of primary esophageal cancer based separately on three-dimensional and four-dimensional computed tomography images. Dis Esophagus. 2014;27:348–354.
  • Lever FM, Lips IM, Crijns SPM, et al. Quantification of esophageal tumor motion on cine-magnetic resonance imaging. Int J Radiat Oncol Biol Phys. 2014;88:419–424.
  • Yamashita H, Kida S, Sakumi A, et al. Four-dimensional measurement of the displacement of internal fiducial markers during 320-multislice computed tomography scanning of thoracic esophageal cancer. Int J Radiat Oncol Biol Phys. 2011;79:588–595.
  • Patel AA, Wolfgang JA, Niemierko A, et al. Implications of respiratory motion as measured by four-dimensional computed tomography for radiation treatment planning of esophageal cancer. Int J Radiat Oncol Biol Phys. 2009;74:290–296.
  • Yaremko BP, Guerrero TM, McAleer MF, et al. Determination of respiratory motion for distal esophagus cancer using four-dimensional computed tomography. Int J Radiat Oncol Biol Phys. 2008;70:145–153.
  • Zhao KL, Liao Z, Bucci MK, et al. Evaluation of respiratory-induced target motion for esophageal tumors at the gastroesophageal junction. Radiother Oncol. 2007;84:283–289.
  • Yamashita H, Haga A, Hayakawa Y, et al. Patient setup error and day-to-day esophageal motion error analyzed by cone-beam computed tomography in radiation therapy. Acta Oncol. 2010;49:485–490.
  • Fukada J, Hanada T, Kawaguchi O, et al. Detection of esophageal fiducial marker displacement during radiation therapy with a 2-dimensional on-board imager: analysis of internal margin for esophageal cancer. Int J Radiat Oncol Biol Phys. 2013;85:991–998.
  • Jin P, van der Horst A, de Jong R, et al. Marker-based quantification of interfractional tumor position variation and the use of markers for setup verification in radiation therapy for esophageal cancer. Radiother Oncol. 2015;117:412–418.
  • Pandolfino JE, Zhang QG, Ghosh SK, et al. Transient lower esophageal sphincter relaxations and reflux: mechanistic analysis using concurrent fluoroscopy and high-resolution manometry. Gastroenterology. 2006;131:1725–1733.
  • Knopf AC, Hong TS, Lomax A. Scanned proton radiotherapy for mobile targets-the effectiveness of re-scanning in the context of different treatment planning approaches and for different motion characteristics . Phys Med Biol. 2011;56:7257–7271.
  • Pan X, Zhang X, Li Y, et al. Impact of using different four-dimensional computed tomography data sets to design proton treatment plans for distal esophageal cancer. Int J Radiat Oncol Biol Phys. 2009;73:601–609.
  • Taylor PA, Kry SF, Followill DS. Pencil beam algorithms are unsuitable for proton dose calculations in lung. Int J Radiat Oncol Biol Phys. 2017;99:750–756.
  • Rasbash J, Charlot C, Browne WJ, et al. MLwiN Version 2.22. Centre for Multilevel Modelling. University of Bristol; 2010.
  • Huijskens SC, van Dijk IWEM, Visser J, et al. Predictive value of pediatric respiratory-induced diaphragm motion quantified using pre-treatment 4DCT and CBCTs. Radiat Oncol. 2018;13:198.
  • Heethuis SE, Borggreve AS, Goense L, et al. Quantification of variations in intra-fraction motion of esophageal tumors over the course of neoadjuvant chemoradiotherapy based on cine-MRI. Phys Med Biol. 2018;63:145019.
  • Doi Y, Murakami Y, Imano N, et al. Quantifying esophageal motion during free-breathing and breath-hold using fiducial markers in patients with early-stage esophageal cancer. Zhang Q, editor. PLoS One. 2018;13:e0198844.
  • Abbas H, Chang B, Chen ZJ. Motion management in gastrointestinal cancers. J Gastrointest Oncol. 2014;5:223–235.