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首款移动光子计数探测器 CT:人体成像及技术性能研究。

The first mobile photon-counting detector CT: the human images and technical performance study.

机构信息

Health & Medical Equipment Business, Samsung Electronics Co., Ltd, 129, SamSung-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16677, Republic of Korea.

Samsung NeuroLogica, 14 Electronics Ave, Danvers, MA 01923, United States of America.

出版信息

Phys Med Biol. 2023 Apr 25;68(9). doi: 10.1088/1361-6560/acc8b3.

Abstract

. The purpose of this study is to assess its human images and its unique capabilities such as the 'on demand' higher spatial resolution and multi-spectral imaging of photon-counting-detector (PCD)-CT.. In this study, the FDA 510(k) cleared mobile PCD-CT (OmniTom Elite) was used. To this end, we imaged internationally certified CT phantoms and a human cadaver head to evaluate the feasibility of high resolution (HR) and multi-energy imaging. We also demonstrate the performance of PCD-CT via first-in-human imaging by scanning three human volunteers.. At the 5 mm slice thickness, routinely used in diagnostic head CT, the first human PCD-CT images were diagnostically equivalent to the EID-CT scanner. The HR acquisition mode of PCD-CT achieved a resolution of 11 line-pairs (lp)/cm as compared to 7 lp cmusing the same kernel (posterior fossa-kernel) in the standard acquisition mode of EID-CT. For the quantitative multi-energy CT performance, the measured CT numbers in virtual mono-energetic images (VMI) of iodine inserts in the Gammex Multi-Energy CT phantom (model 1492, Sun Nuclear Corporation, USA) matched the manufacturer reference values with mean percent error of 3.25%. Multi-energy decomposition with PCD-CT demonstrated the separation and quantification of iodine, calcium, and water.. PCD-CT can achieve multi-resolution acquisition modes without physically changing the CT detector. It can provide superior spatial resolution compared with the standard acquisition mode the conventional mobile EID-CT. Quantitative spectral capability of PCD-CT can provide accurate, simultaneous multi-energy images for material decomposition and VMI generation using a single exposure.

摘要

本研究旨在评估其人体成像能力及其独特功能,如光子计数探测器 (PCD)-CT 的“按需”更高空间分辨率和多光谱成像。本研究使用了经美国食品和药物管理局 (FDA) 510(k) 批准的移动 PCD-CT(OmniTom Elite)。为此,我们对国际认证的 CT 体模和人体头颅进行成像,以评估高分辨率 (HR) 和多能量成像的可行性。我们还通过对三名志愿者进行首次人体成像来展示 PCD-CT 的性能。在常规用于诊断性头部 CT 的 5 毫米切片厚度下,首次人体 PCD-CT 图像与 EID-CT 扫描仪具有相同的诊断能力。与 EID-CT 标准采集模式中相同的内核(后颅窝内核)相比,PCD-CT 的 HR 采集模式可实现 11 线对/cm 的分辨率。对于定量多能量 CT 性能,Gammex 多能量 CT 体模(美国 Sun Nuclear 公司,型号 1492)碘插塞的虚拟单能量图像 (VMI) 中的测量 CT 值与制造商参考值相匹配,平均误差为 3.25%。PCD-CT 的多能量分解可实现碘、钙和水的分离和定量。PCD-CT 可以在不改变 CT 探测器的情况下实现多分辨率采集模式。与传统的移动 EID-CT 相比,它可以提供更高的空间分辨率。PCD-CT 的定量光谱能力可以使用单次曝光提供准确的、同时的多能量图像,用于材料分解和 VMI 生成。

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