Evaluation of computed tomography metal artifact and CyberKnife fiducial recognition for novel size fiducial markers

Author:

Nemoto Hikaru12,Saito Masahide2,Suzuki Toshihiro3,Suzuki Hidekazu2,Sano Naoki2,Mochizuki Zennosuke3,Mochizuki Koji3,Ueda Koji2,Komiyama Takafumi2,Marino Kan2,Aoki Shinichi2,Oguri Mitsuhiko4,Takahashi Hiroshi3,Onishi Hiroshi2

Affiliation:

1. Department of Advanced Biomedical Imaging University of Yamanashi Yamanashi Japan

2. Department of Radiology University of Yamanashi Yamanashi Japan

3. Kasugai CyberKnife Rehabilitation Hospital Yamanashi Japan

4. Department of Radiology Shizuoka General Hospital Shizuoka Japan

Abstract

AbstractPurposeThis study aimed to compare fiducial markers used in CyberKnife treatment in terms of metal artifact intensity observed in CT images and fiducial recognition in the CyberKnife system affected by patient body thickness and type of marker.MethodsFive markers, ACCULOC 0.9 mm × 3 mm, Ball type Gold Anchor (GA) 0.28 mm × 10 mm, 0.28 mm × 20 mm, and novel size GA 0.4 mm × 10 mm, 0.4 mm × 20 mm were evaluated. To evaluate metal artifacts of CT images, two types of CT images of water‐equivalent gels with each marker were acquired using Aquilion LB CT scanner, one applied SEMAR (SEMAR‐on) and the other did not apply this technique (SEMAR‐off). The evaluation metric of artifact intensity (MSD) which represents a variation of CT values were compared for each marker. Next, 5, 15, and 20 cm thickness of Tough Water (TW) was placed on the gel under the condition of overlapping the vertebral phantom in the Target Locating System, and the live image of each marker was acquired to compare fiducial recognition.ResultsThe mean MSD of SEMAR‐off was 78.80, 74.50, 97.25, 83.29, and 149.64 HU for ACCULOC, GA0.28 mm × 10 mm, 20 mm, and 0.40 mm × 10 mm, 20 mm, respectively. In the same manner, that of SEMAR‐on was 23.52, 20.26, 26.76, 24.89, and 33.96 HU, respectively. Fiducial recognition decreased in the order of 5, 15, and 20 cm thickness, and GA 0.4 × 20 mm showed the best recognition at thickness of 20 cm TW.ConclusionsWe demonstrated the potential to reduce metal artifacts in the CT image to the same level for all the markers we evaluated by applying SEMAR. Additionally, the fiducial recognition of each marker may vary depending on the thickness of the patient's body. Particularly, we showed that GA 0.40 × 20 mm may have more optimal recognition for CyberKnife treatment in cases of high bodily thickness in comparison to the other markers.

Publisher

Wiley

Subject

Radiology, Nuclear Medicine and imaging,Instrumentation,Radiation

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