Photon-Counting Detector CT Virtual Monoengergetic Images for Cochlear Implant Visualization—A Head to Head Comparison to Energy-Integrating Detector CT

探测器 扫描仪 能见度 尸体痉挛 断层摄影术 材料科学 医学 生物医学工程 核医学 人工耳蜗植入 放射科 光学 物理 外科 听力学
作者
Stephan Waldeck,Daniel Overhoff,Leona S. Alizadeh,Benjamin V. Becker,Matthias Port,Matthias F. Froelich,Marc A. Brockmann,Sven Schumann,Thomas J. Vogl,Stefan O. Schoenberg,Sandra Schmidt
出处
期刊:Tomography [MDPI AG]
卷期号:8 (4): 1642-1648 被引量:12
标识
DOI:10.3390/tomography8040136
摘要

Cochlear implants (CIs) are the primary treatment method in patients with profound sensorineural hearing loss. Interpretation of postoperative imaging with conventional energy-integrating detector computed tomography (EID-CT) following CI surgery remains challenging due to metal artifacts. Still, the photon-counting detector (PCD-CT) is a new emerging technology with the potential to eliminate these problems. This study evaluated the performance of virtual monoenergetic (VME) EID-CT images versus PCD-CT in CI imaging. In this cadaveric study, two temporal bone specimens with implanted CIs were scanned with EID-CT and PCD-CT. The images were assessed according to the visibility of interelectrode wire, size of electrode contact, and diameter of halo artifacts. The visibility of interelectrode wire sections was significantly higher when reviewing PCD-CT images. The difference in diameter measurements for electrode contacts between the two CT scanner modalities showed that the PCD-CT technology generally led to significantly larger diameter readings. The larger measurements were closer to the manufacturer's specifications for the CI electrode. The size of halo artifacts surrounding the electrode contacts did not differ significantly between the two imaging modalities. PCT-CT imaging is a promising technology for CI imaging with improved spatial resolution and better visibility of small structures than conventional EID-CT.

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