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Performance characteristics of a new pixelated portable gamma camera

机译:新型像素化便携式伽马相机的性能特征

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Purpose: To evaluate and characterize the performance of a new commercially available pixelated portable gamma camera Ergo (Digirad, Poway, CA). Methods: The authors evaluated a pixelated portable gamma camera system, Ergo, that consists of 11 520 elements of 3 × 3 mm 2 CsI(Tl) crystals that are 6-mm thick and are coupled to silicon photodiodes. The detector element has a size of 3.31 × 3.24 mm 2. The gamma camera performance was evaluated for both low-energy all-purpose (LEAP) and low-energy high-resolution (LEHR) collimators. The flood-field uniformity for 99mTc and 201Tl was assessed using fillable uniform flood phantoms. Energy spectra were acquired for 99mTc, 111In, 201Tl, and 67Ga to evaluate energy linearity and energy resolution. Spectral fits were performed to calculate the photopeak energies and resolutions. The pixel size and multiwindow spatial registration (MWSR) was evaluated by measuring mixed 99mTc and 201Tl point sources placed at known distances apart. The system's sensitivity was measured according to the National Electrical Manufacturer's Association (NEMA) NU1-2007 standards for both LEAP and LEHR collimators as a function of distance from the collimator surface (5, 10, 15, 20, 25, 30, and 40 cm). The system resolution without scatter was measured for both LEAP and LEHR using 99mTc-filled capillary tubes located at 0, 2, 4, 6, 10, and 12 cm away from the surface of the collimator. As a measure of the spatial resolution, the full width at half maximum (FWHM) at a given distance was calculated from the presampling line spread function (LSF), constructed from the line profiles of the capillary tubes at the same distance. As a comparison, the FWHM at 10 cm away from LEHR and LEAP collimators was also calculated from linear interpolation as described by NEMA NU-1 2007 and from fitting the profiles to a Gaussian-plus-constant model. Results: All isotope-collimator pairs demonstrated good flood-field uniformity with an integral uniformity of 5 and a differential uniformity of 3. The system demonstrated excellent energy linearity with maximum discrepancy of measured keV from true keV of 1. The energy resolution of the 99mTc 140-keV photopeak was 7.4. The image pixel size was measured as 3.23 × 3.18 mm 2, and the MWSR was within 0.3 mm (or ~10 of the nominal pixel size). The system sensitivity at 10 cm was 112.6 cps/MBq (249.9 cpm/μCi) for LEAP and 63.1 cps/MBq (140.1 cpm/μCi) for LEHR. The system spatial resolution varied linearly with distance from the collimator and the FWHM were measured to be 7.2 and 8.9 mm at 10 cm for LEHR and LEAP, respectively. Conclusions: Herein, the authors describe detailed performance evaluation procedures of a new pixelated portable gamma camera system, which can also be applied to evaluate other pixelated gamma camera system. Spatial resolution assessment in near-field imaging condition offers a unique challenge where the measured FWHM is highly dependent on relative position between the capillary tube and the detector element. The evaluations of the Ergo gamma camera suggest suitable clinical imaging performance. This portable gamma camera has a high (LEAP) planar sensitivity, high energy and spatial resolutions that are comparable to other available gamma cameras, and it exhibits superior count rate performance that is linear up to tens of millions count per second. The Ergo imaging performance, however, can still be improved, for example, by optimizing collimator design for near field imaging.
机译:目的:评估和表征新型商用像素化便携式伽马相机Ergo(加利福尼亚州波威市的迪吉拉德)的性能。方法:作者评估了一个像素化便携式伽玛相机系统Ergo,该系统由11520个3×3 mm 2 CsI(Tl)晶体组成,其厚度为6 mm,并与硅光电二极管耦合。探测器元件的尺寸为3.31×3.24 mm2。已针对低能耗通用(LEAP)和低能耗高分辨率(LEHR)准直仪评估了伽马相机的性能。使用可填充的均匀洪水模型评估了99mTc和201Tl的洪水场均匀性。获取了99mTc,111In,201Tl和67Ga的能谱,以评估能量线性和能量分辨率。进行光谱拟合以计算光峰能量和分辨率。像素大小和多窗口空间配准(MWSR)通过测量以已知距离分开放置的混合99mTc和201Tl点源进行评估。系统的灵敏度是根据美国国家电气制造商协会(NEMA)NU1-2007标准对LEAP和LEHR准直仪进行测量的,它是距准直仪表面距离的函数(5、10、15、20、25、30和40 cm )。使用位于距准直仪表面0、2、4、6、10和12 cm处的99mTc填充的毛细管,对LEAP和LEHR进行了无散射的系统分辨率测量。作为空间分辨率的度量,从给定距离处的半峰全宽(FWHM)是根据预采样线扩散函数(LSF)计算的,该函数是由相同距离处的毛细管的线轮廓构成的。作为比较,还按照NEMA NU-1 2007所述通过线性插值法以及通过将轮廓拟合到高斯正常数模型来计算距LEHR和LEAP准直仪10 cm处的FWHM。结果:所有同位素-准直器对都表现出良好的泛光场均匀性,整体均匀性为5,微分均匀性为3。系统表现出出色的能量线性,实测keV与真实keV的最大差异为1。99mTc的能量分辨率140 keV光电峰为7.4。图像像素尺寸经测量为3.23×3.18 mm 2,MWSR在0.3 mm以内(或标称像素尺寸的约10倍)。对于LEAP,在10 cm处的系统灵敏度为112.6 cps / MBq(249.9 cpm /μCi),对于LEHR,系统灵敏度为63.1 cps / MBq(140.1 cpm /μCi)。对于LEHR和LEAP,在10 cm处,系统空间分辨率随距准直仪的距离线性变化,分别为7.2 mm和8.9 mm。结论:在此,作者描述了一种新的像素化便携式伽马相机系统的详细性能评估程序,该程序也可以用于评估其他像素化伽马相机系统。近场成像条件下的空间分辨率评估提出了一个独特的挑战,即所测FWHM高度取决于毛细管与检测器元件之间的相对位置。 Ergo伽马相机的评估表明合适的临床成像性能。这款便携式伽马相机具有很高的(LEAP)平面灵敏度,高能量和空间分辨率,可与其他可用的伽马相机相媲美,并且具有出色的计数率性能,该性能线性每秒高达数千万个计数。但是,例如,通过优化用于近场成像的准直仪设计,仍然可以提高Ergo成像性能。

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