• 제목/요약/키워드: Photon counting detector-based imaging

검색결과 4건 처리시간 0.015초

Photon-Counting Computed Tomography: Experience in Musculoskeletal Imaging

  • Jan-Peter Grunz;Henner Huflage
    • Korean Journal of Radiology
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    • 제25권7호
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    • pp.662-672
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    • 2024
  • Since the emergence of the first photon-counting computed tomography (PCCT) system in late 2021, its advantages and a wide range of applications in all fields of radiology have been demonstrated. Compared to standard energy-integrating detector-CT, PCCT allows for superior geometric dose efficiency in every examination. While this aspect by itself is groundbreaking, the advantages do not stop there. PCCT facilitates an unprecedented combination of ultra-high-resolution imaging without dose penalty or field-of-view restrictions, detector-based elimination of electronic noise, and ubiquitous multi-energy spectral information. Considering the high demands of orthopedic imaging for the visualization of minuscule details while simultaneously covering large portions of skeletal and soft tissue anatomy, no subspecialty may benefit more from this novel detector technology than musculoskeletal radiology. Deeply rooted in experimental and clinical research, this review article aims to provide an introduction to the cosmos of PCCT, explain its technical basics, and highlight the most promising applications for patient care, while also mentioning current limitations that need to be overcome.

Block-matching and 3D filtering algorithm in X-ray image with photon counting detector using the improved K-edge subtraction method

  • Kyuseok Kim;Youngjin Lee
    • Nuclear Engineering and Technology
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    • 제56권6호
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    • pp.2057-2062
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    • 2024
  • Among photon counting detector (PCD)-based technologies, the K-edge subtraction (KES) method has a very high material decomposition efficiency. Yet, since the increase in noise in the X-ray image to which the KES method is applied is inevitable, research on image quality improvement is essential. Here, we modeled a block-matching and 3D filtering (BM3D) algorithm and applied it to PCD-based X-ray images with the improved KES (IKES) method. For PCD modeling, Monte Carlo simulation was used, and a phantom composed of iodine substances with different concentrations was designed. The IKES method was modeled by adding a log term to KES, and the X-ray image used for subtraction was obtained by applying the 3.0 keV range based on the K-edge region of iodine. As a result, the IKES image using the BM3D algorithm showed the lowest normalized noise power spectrum value. In addition, we confirmed that the contrast-to-noise ratio and no-reference-based evaluation results when the BM3D algorithm was applied to the IKES image were improved by 29.36 % and 20.56 %, respectively, compared to the noisy image. In conclusion, we demonstrated that the IKES imaging technique using a PCD-based detector and the BM3D algorithm fusion technique were very efficient for X-ray imaging.

Performance analysis of improved hybrid median filter applied to X-ray computed tomography images obtained with high-resolution photon-counting CZT detector: A pilot study

  • Lee, Youngjin
    • Nuclear Engineering and Technology
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    • 제54권9호
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    • pp.3380-3389
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    • 2022
  • We evaluated the performance of an improved hybrid median filter (IHMF) applied to X-ray computed tomography (CT) images obtained using a high-resolution photon-counting cadmium zinc telluride (CZT) detector. To study how the proposed approach improves the image quality, we measured the noise levels and the overall CT-image quality. We established a CZT imaging system with a detector length of 5.12 cm and thickness of 0.3 cm and acquired phantom images. To evaluate the efficacy of the proposed filter, we first modeled two conventional median filters. Subsequently, we were able to achieve a normalized noise power spectrum result of ~10-8 mm2, and furthermore, the proposed method improved the contrast-to-noise ratio by a factor of ~1.51 and the coefficient of variation by 1.55 relative to the counterpart values of the no-filter image. In addition, the IHMF exhibited the best performance among the three filters considered as regards the peak signal-to-noise ratio and no-reference-based image-quality evaluation parameters. Thus, our results demonstrate that the IHMF approach provides a superior image performance over conventional median filtering methods when applied to actual CZT X-ray CT images.

K-각 영상을 이용한 스펙트럼 전산화단층촬영 기반 3차원 융합진단영상화에 관한 연구 (3D Fusion Imaging based on Spectral Computed Tomography Using K-edge Images)

  • 김번영;이승완;임도빈
    • 한국방사선학회논문지
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    • 제13권4호
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    • pp.523-530
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    • 2019
  • 본 연구의 목적은 광자계수검출기 기반 스펙트럼 전산화단층촬영을 이용하여 K-각 영상을 획득하고, 이를 통해 3차원 융합진단영상을 구현하여 임상적 이용 가능성을 평가하고자 하였다. 실험을 통한 K-각 영상획득을 위해 스펙트럼 전산화단층촬영 시스템을 이용하였다. 희석된 iodine과 gadolinium 조영제가 주입된 6개의 튜브를 돼지고기에 삽입하여 팬텀을 제작하였다. 100 kVp 관전압과 $500{\mu}A$ 관전류 조건에서 발생된 X-선을 이용하였으며, iodine과 gadolinium의 K-각 흡수에너지를 고려한 35 및 52 keV에 저 에너지 문턱값을 설정하여 K-각 영상을 획득하였다. 융합진단영상은 일반적인 전산화단층촬영 영상과 스펙트럼 전산화단층촬영을 통해 획득한 iodine 및 gadolinium 영상을 정합하여 획득하였다. 두 가지 조영제 기반 융합진단영상의 CNR은 일반적인 CT보다 평균적으로 6.76-14.9배 높았으며, 3차원 융합진단영상은 각 조영제의 물질 지도 정보를 제공할 수 있었다. 따라서 본 연구에서 제안하는 방법을 통해 전산화단층영상의 화질을 향상시킬 수 있으며 특정 물질의 추가적인 정보를 제공을 통해 진단의 효율성을 증가시킬 수 있다.