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采用两个固定探测器和多孔径成像的第五代超高分辨率单光子发射计算机断层扫描(SPECT)系统的性能评估

Performance evaluation of fifth-generation ultra-high-resolution SPECT system with two stationary detectors and multi-pinhole imaging.

作者信息

Hoffmann Jan V, Janssen Jan P, Kanno Takayuki, Shibutani Takayuki, Onoguchi Masahisa, Lapa Constantin, Grunz Jan-Peter, Buck Andreas K, Higuchi Takahiro

机构信息

Department of Nuclear Medicine, University Hospital Würzburg, Oberdürrbacher Strasse 6, 97080, Würzburg, Germany.

Comprehensive Heart Failure Center, University Hospital Würzburg, Würzburg, Germany.

出版信息

EJNMMI Phys. 2020 Nov 2;7(1):64. doi: 10.1186/s40658-020-00335-6.

Abstract

BACKGROUND

Small-animal single-photon emission computed tomography (SPECT) systems with multi-pinhole collimation and large stationary detectors have advantages compared to systems with moving small detectors. These systems benefit from less labour-intensive maintenance and quality control as fewer prone parts are moving, higher accuracy for focused scans and maintaining high resolution with increased sensitivity due to focused pinholes on the field of view. This study aims to investigate the performance of a novel ultra-high-resolution scanner with two-detector configuration (U-SPECT5-E) and to compare its image quality to a conventional micro-SPECT system with three stationary detectors (U-SPECT).

METHODS

The new U-SPECT5-E with two stationary detectors was used for acquiring data with Tc-filled point source, hot-rod and uniformity phantoms to analyse sensitivity, spatial resolution, uniformity and contrast-to-noise ratio (CNR). Three dedicated multi-pinhole mouse collimators with 75 pinholes each and 0.25-, 0.60- and 1.00-mm pinholes for extra ultra-high resolution (XUHR-M), general-purpose (GP-M) and ultra-high sensitivity (UHS-M) imaging were examined. For CNR analysis, four different activity ranges representing low- and high-count settings were investigated for all three collimators. The experiments for the performance assessment were repeated with the same GP-M collimator in the three-detector U-SPECT for comparison.

RESULTS

Peak sensitivity was 237 cps/MBq (XUHR-M), 847 cps/MBq (GP-M), 2054 cps/MBq (UHS-M) for U-SPECT5-E and 1710 cps/MBq (GP-M) for U-SPECT. In the visually analysed sections of the reconstructed mini Derenzo phantoms, rods as small as 0.35 mm (XUHR-M), 0.50 mm (GP-M) for the two-detector as well as the three-detector SPECT and 0.75 mm (UHS-M) were resolved. Uniformity for maximum resolution recorded 40.7% (XUHR-M), 29.1% (GP-M, U-SPECT5-E), 16.3% (GP-M, U-SPECT) and 23.0% (UHS-M), respectively. UHS-M reached highest CNR values for low-count images; for rods smaller than 0.45 mm, acceptable CNR was only achieved by XUHR-M. GP-M was superior for imaging rods sized from 0.60 to 1.50 mm for intermediate activity concentrations. U-SPECT5-E and U-SPECT both provided comparable CNR.

CONCLUSIONS

While uniformity and sensitivity are negatively affected by the absence of a third detector, the investigated U-SPECT5-E system with two stationary detectors delivers excellent spatial resolution and CNR comparable to the performance of an established three-detector-setup.

摘要

背景

与配备移动小探测器的系统相比,具有多针孔准直和大型固定探测器的小动物单光子发射计算机断层扫描(SPECT)系统具有优势。这些系统受益于维护和质量控制的劳动强度较低,因为移动的易损部件较少,聚焦扫描的精度更高,并且由于视场上的聚焦针孔,在提高灵敏度的同时保持高分辨率。本研究旨在研究一种新型双探测器配置的超高分辨率扫描仪(U-SPECT5-E)的性能,并将其图像质量与具有三个固定探测器的传统微型SPECT系统(U-SPECT)进行比较。

方法

使用新型双固定探测器的U-SPECT5-E,通过填充锝的点源、热棒和均匀性模体获取数据,以分析灵敏度、空间分辨率、均匀性和对比噪声比(CNR)。检查了三个专用的多针孔小鼠准直器,每个准直器有75个针孔,针孔尺寸分别为0.25毫米、0.60毫米和1.00毫米,用于超高分辨率(XUHR-M)、通用(GP-M)和超高灵敏度(UHS-M)成像。对于CNR分析,研究了所有三个准直器在代表低计数和高计数设置的四个不同活度范围内的情况。使用相同的GP-M准直器在三探测器U-SPECT中重复进行性能评估实验以作比较。

结果

U-SPECT5-E的峰值灵敏度分别为237 cps/MBq(XUHR-M)、847 cps/MBq(GP-M)、2054 cps/MBq(UHS-M),U-SPECT的峰值灵敏度为1710 cps/MBq(GP-M)。在重建的微型德伦佐模体的视觉分析切片中,双探测器以及三探测器SPECT可分辨出小至0.35毫米(XUHR-M)、0.50毫米(GP-M)的棒,UHS-M可分辨出0.75毫米的棒。记录的最大分辨率下的均匀性分别为40.7%(XUHR-M)、29.1%(GP-M、U-SPECT5-E)、16.3%(GP-M、U-SPECT)和23.0%(UHS-M)。UHS-M在低计数图像中达到最高的CNR值;对于小于0.45毫米的棒,只有XUHR-M能获得可接受的CNR。对于中等活度浓度下尺寸为0.60至1.50毫米的棒,GP-M成像效果更佳。U-SPECT5-E和U-SPECT的CNR相当。

结论

虽然缺少第三个探测器会对均匀性和灵敏度产生负面影响,但所研究的具有两个固定探测器的U-SPECT5-E系统具有出色的空间分辨率,其CNR与已建立的三探测器设置的性能相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b38/7606439/a9b3fa6866d6/40658_2020_335_Fig1_HTML.jpg

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