Literature DB >> 26583772

Markerless tumor tracking using short kilovoltage imaging arcs for lung image-guided radiotherapy.

Chun-Chien Shieh1, Paul J Keall, Zdenka Kuncic, Chen-Yu Huang, Ilana Feain.   

Abstract

The ability to monitor tumor motion without implanted markers is clinically advantageous for lung image-guided radiotherapy (IGRT). Existing markerless tracking methods often suffer from overlapping structures and low visibility of tumors on kV projection images. We introduce the short arc tumor tracking (SATT) method to overcome these issues. The proposed method utilizes multiple kV projection images selected from a nine-degree imaging arc to improve tumor localization, and respiratory-correlated 4D cone-beam CT (CBCT) prior knowledge to minimize the effects of overlapping anatomies. The 3D tumor position is solved as an optimization problem with prior knowledge incorporated via regularization. We retrospectively validated SATT on 11 clinical scans from four patients with central tumors. These patients represent challenging scenarios for markerless tumor tracking due to the inferior adjacent contrast. The 3D trajectories of implanted fiducial markers were used as the ground truth for tracking accuracy evaluation. In all cases, the tumors were successfully tracked at all gantry angles. Compared to standard pre-treatment CBCT guidance alone, trajectory errors were significantly smaller with tracking in all cases, and the improvements were the most prominent in the superior-inferior direction. The mean 3D tracking error ranged from 2.2-9.9 mm, which was 0.4-2.6 mm smaller compared to pre-treatment CBCT. In conclusion, we were able to directly track tumors with inferior visibility on kV projection images using SATT. Tumor localization accuracies are significantly better with tracking compared to the current standard of care of lung IGRT. Future work involves the prospective evaluation and clinical implementation of SATT.

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Year:  2015        PMID: 26583772      PMCID: PMC4833659          DOI: 10.1088/0031-9155/60/24/9437

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  45 in total

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4.  Real-time profiling of respiratory motion: baseline drift, frequency variation and fundamental pattern change.

Authors:  D Ruan; J A Fessler; J M Balter; P J Keall
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1.  A Bayesian approach for three-dimensional markerless tumor tracking using kV imaging during lung radiotherapy.

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Journal:  Phys Med Biol       Date:  2017-03-21       Impact factor: 3.609

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Authors:  John C Roeske; Hassan Mostafavi; Maksat Haytmyradov; Adam Wang; Daniel Morf; Luca Cortesi; Murat Surucu; Rakesh Patel; Roberto Cassetta; Liangjia Zhu; Mathias Lehmann; Matthew M Harkenrider
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6.  Image quality of 4D in-treatment CBCT acquired during lung SBRT using FFF beam: a phantom study.

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7.  MArkerless image Guidance using Intrafraction Kilovoltage x-ray imaging (MAGIK): study protocol for a phase I interventional study for lung cancer radiotherapy.

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  7 in total

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