Photon-Counting Computed Tomography of the Paranasal Sinuses Improves Intraoperative Accuracy of Image-Guided Surgery
Abstract
1. Background
2. Methods
2.1. Study Design and Study Sample
2.2. Imaging Protocols
2.3. Setup of Image-Guided Surgery and Endoscopic Evaluation of Accuracy
2.4. Analysis of Image Quality
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- Visibility of the anterior skull base, lamina papyracea, orbital fat, anterior ethmoidal artery and bony coverage of the optic nerve and internal carotid artery (1 = not visible; 2 = vaguely visible, but not over the entire extent; 3 = vaguely visible, over the entire extent; 4 = unambiguously visible, but not over the entire extent; 5 = unambiguously visible, over the entire extent).
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- Overall image quality (1 = poor; 2 = acceptable; 3 = moderate; 4 = good; 5 = excellent).
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- Metal and motion artifacts (1 = severe artifacts, image interpretation impossible; 2 = severe artifacts, strong impairment of image interpretation; 3 = severe artifacts, slight impairment of image interpretation; 4 = slight artifacts, no impairment of image interpretation; 5 = no artifacts).
2.5. Statistical Analysis
3. Results
3.1. IGS Setup
3.2. IGS Accuracy
3.3. Analysis of Image Quality and Minimally Needed Radiation Dose
4. Discussion
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
| CTDI_vol | Computed Tomography Dose Index-Volume |
| CdTe | Cadmium Telluride |
| CNR | Contrast-to-Noise Ratio |
| CRS | Chronic Rhinosinusitis |
| CT | Computed Tomography |
| DECT | Dual-Energy Dual-Source Computed Tomography |
| DLP | Dose Length Product |
| EID | Energy-Integrating Detector |
| ESBS | Endoscopic Skull Base Surgery |
| FESS | Functional Endoscopic Sinus Surgery |
| IGS | Image-Guided Surgery |
| PCCT | Photon-Counting Computed Tomography |
| ROI | Region of Interest |
| SDCT | Spectral Detector Computed Tomography |
| SNR | Signal-to-Noise Ratio |
| VAS | Visual Analog Scale |
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Ernst, B.P.; Burck, I.; Schliwa, S.; Becker, S.; Albrecht, T.; Vogl, T.J.; Scholtz, J.-E.; Levi, A.; Loth, A.G.; Bärhold, F.; et al. Photon-Counting Computed Tomography of the Paranasal Sinuses Improves Intraoperative Accuracy of Image-Guided Surgery. Diagnostics 2025, 15, 2777. https://doi.org/10.3390/diagnostics15212777
Ernst BP, Burck I, Schliwa S, Becker S, Albrecht T, Vogl TJ, Scholtz J-E, Levi A, Loth AG, Bärhold F, et al. Photon-Counting Computed Tomography of the Paranasal Sinuses Improves Intraoperative Accuracy of Image-Guided Surgery. Diagnostics. 2025; 15(21):2777. https://doi.org/10.3390/diagnostics15212777
Chicago/Turabian StyleErnst, Benjamin Philipp, Iris Burck, Stefanie Schliwa, Sven Becker, Tobias Albrecht, Thomas J. Vogl, Jan-Erik Scholtz, Anna Levi, Andreas German Loth, Friederike Bärhold, and et al. 2025. "Photon-Counting Computed Tomography of the Paranasal Sinuses Improves Intraoperative Accuracy of Image-Guided Surgery" Diagnostics 15, no. 21: 2777. https://doi.org/10.3390/diagnostics15212777
APA StyleErnst, B. P., Burck, I., Schliwa, S., Becker, S., Albrecht, T., Vogl, T. J., Scholtz, J.-E., Levi, A., Loth, A. G., Bärhold, F., Strieth, S., Froelich, M. F., Hertel, A., Layer, Y. C., Kuetting, D., & Eckrich, J. (2025). Photon-Counting Computed Tomography of the Paranasal Sinuses Improves Intraoperative Accuracy of Image-Guided Surgery. Diagnostics, 15(21), 2777. https://doi.org/10.3390/diagnostics15212777

