Chang Chih-Feng, Chen Chih-Feng, Wang Tzu-Hwei, Chiang Fu-Tsai, Wu Hao-Ting, Pan Lung-Fa, Pan Lung-Kwang
Department of Cardiology, Taichung Armed Forces General Hospital, Taichung 406, Taiwan, ROC.
Hell J Nucl Med. 2019 Jan-Apr;22(1):49-57. doi: 10.1967/s002449910959. Epub 2019 Mar 7.
An indigenous polymethyl metacrylate (PMMA) phantom with a V-shaped slit and a correlated technique for semi-quantifying the minimum detectable difference (MDD) of single photon emission tomography (SPET) via gamma camera scanning are proposed and validated using four radionuclides.
Radio-actinide solutions of gallium-67 (Ga), technetium-99m (Tc), iodine-131 (I) and thallium-201 (Tl) were diluted to 11c.c. and thoroughly injected into the continuous zig zag slit of the PMMA phantom. Either depth or edge of the slit between two lines of the V-shape was customized from deep or wide to change into shallow or narrow gradually. Thus, the quantified MDD could be easily evaluated, according to the revised Student's t-test evaluation. The revised Student's t-test was calculated by both full width at half maximum (FWHM) and edge width between two adjacent peaks that were acquired from the original data matrix of SPET. The derived MDD was indicated as for radionuclide, depth, width in mm: For Ga, 2.9, 2.13, for Tc, 2.5, 0.66, for I, 4.7, 2.38 and for Tl, 3.3, 2.00, respectively.
Technetium-99m had the highest and I had the lowest MDD among the four radionuclides. Furthermore, two adjacent peaks of Ga could be easily identified with fewer counts than for Tl (depth, 2.9 vs. 3.3mm), but its MDD was poorer (width: 2.13 vs.2.00mm). The revised Student's t-test analysis proved to be an acceptable technique for the MDD identification.
The proposed new combination of PMMA phantom with a V-slit and the revised Student's t-test proved to be instrumental in the MDD of SPET optimization analysis.
提出一种带有V形狭缝的国产聚甲基丙烯酸甲酯(PMMA)体模以及一种相关技术,用于通过伽马相机扫描对单光子发射断层扫描(SPET)的最小可检测差异(MDD)进行半定量分析,并使用四种放射性核素进行验证。
将镓 - 67(Ga)、锝 - 99m(Tc)、碘 - 131(I)和铊 - 201(Tl)的放射性锕系元素溶液稀释至11立方厘米,并充分注入PMMA体模的连续锯齿形狭缝中。V形两条线之间狭缝的深度或边缘可从深或宽进行定制,逐渐变为浅或窄。因此,根据修正的学生t检验评估,可以轻松评估量化的MDD。修正的学生t检验通过从SPET原始数据矩阵获取的半高宽(FWHM)和两个相邻峰之间的边缘宽度来计算。得出的MDD表示为放射性核素、深度、毫米宽度:对于Ga,分别为2.9、2.13;对于Tc,为2.5、0.66;对于I,为4.7、2.38;对于Tl,为3.3、2.00。
在四种放射性核素中,锝 - 99m的MDD最高,碘的MDD最低。此外,与铊相比,镓的两个相邻峰用更少的计数就能轻松识别(深度,2.9对3.3毫米),但其MDD较差(宽度:2.13对2.00毫米)。修正的学生t检验分析被证明是一种可接受的MDD识别技术。
所提出的带有V形狭缝的PMMA体模与修正的学生t检验的新组合被证明有助于SPET优化分析的MDD。