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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.

DOI:10.1088/1361-6560/acc8b3
PMID:36990097
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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引用本文的文献

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Mobile photon counting detector CT with multi material decomposition methods for neuroimaging of patients in intensive care unit.用于重症监护病房患者神经成像的具有多物质分解方法的移动式光子计数探测器CT
Sci Rep. 2024 Dec 30;14(1):31745. doi: 10.1038/s41598-024-81735-x.
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Portable head CT motion artifact correction via diffusion-based generative model.
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Comput Med Imaging Graph. 2025 Jan;119:102478. doi: 10.1016/j.compmedimag.2024.102478. Epub 2024 Dec 13.
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Estimate and compensate head motion in non-contrast head CT scans using partial angle reconstruction and deep learning.使用部分角度重建和深度学习估计和补偿非对比头部 CT 扫描中的头部运动。
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