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光子计数计算机断层扫描在成年患者中准确成像筛板(颅神经)

Photon Counting Computed Tomography for Accurate Cribriform Plate (Lamina Cribrosa) Imaging in Adult Patients.

机构信息

Department of Neuroradiology, University Medical Centre Mannheim, Medical Faculty Mannheim, University of Heidelberg, 68167 Mannheim, Germany.

Department of Radiation Oncology, University Medical Centre Mannheim, Medical Faculty Mannheim, University of Heidelberg, 68167 Mannheim, Germany.

出版信息

Tomography. 2024 Mar 8;10(3):400-414. doi: 10.3390/tomography10030031.

Abstract

Detailed visualization of the cribriform plate is challenging due to its intricate structure. This study investigates how computed tomography (CT) with a novel photon counting (PC) detector enhance cribriform plate visualization compared to traditionally used energy-integrated detectors in patients. A total of 40 patients were included in a retrospective analysis, with half of them undergoing PC CT (Naeotom Alpha Siemens Healthineers, Forchheim, Germany) and the other half undergoing CT scans using an energy-integrated detector (Somatom Sensation 64, Siemens, Forchheim, Germany) in which the cribriform plate was visualized with a temporal bone protocol. Both groups of scans were evaluated for signal-to-noise ratio, radiation dose, the imaging quality of the whole scan overall, and, separately, the cribriform plate and the clarity of volume rendering reconstructions. Two independent observers conducted a qualitative analysis using a Likert scale. The results consistently demonstrated excellent imaging of the cribriform plate with the PC CT scanner, surpassing traditional technology. The visualization provided by PC CT allowed for precise anatomical assessment of the cribriform plate on multiplanar reconstructions and volume rendering imaging with reduced radiation dose (by approximately 50% per slice) and higher signal-to-noise ratio (by approximately 75%). In conclusion, photon-counting technology provides the possibility of better imaging of the cribriform plate in adult patients. This enhanced imaging could be utilized in skull base-associated pathologies, such as cerebrospinal fluid leaks, to visualize them more reliably for precise treatment.

摘要

由于其复杂的结构,对筛板进行详细可视化具有挑战性。本研究调查了在患者中,与传统使用的能量积分探测器相比,新型光子计数(PC)探测器的计算机断层扫描(CT)如何增强筛板可视化。总共对 40 名患者进行了回顾性分析,其中一半患者接受 PC CT(Naeotom Alpha 西门子医疗,Forchheim,德国)检查,另一半患者接受能量积分探测器(Somatom Sensation 64,西门子,Forchheim,德国)CT 扫描,其中使用颞骨协议可视化筛板。对两组扫描的信噪比、辐射剂量、整体扫描的成像质量以及单独的筛板和容积渲染重建的清晰度进行评估。两位独立观察者使用李克特量表进行定性分析。结果一致表明,PC CT 扫描仪能够出色地显示筛板,优于传统技术。PC CT 提供的可视化效果可在多平面重建和容积渲染成像上对筛板进行精确的解剖评估,同时辐射剂量降低(每片降低约 50%),信噪比提高(提高约 75%)。总之,光子计数技术为成年患者更好地显示筛板提供了可能性。这种增强的成像可以用于与颅底相关的病理,如脑脊液漏,以更可靠地显示它们,从而进行精确的治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d21/10974082/a0f82961f754/tomography-10-00031-g001.jpg

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