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Adsorption of TcO4- by zeolites and other crystalline minerals for testing small-animal imaging-system performance

机译:用沸石和其他晶体矿物吸附用于测试小动物成像系统性能的晶体矿物

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When evaluating small-animal imagers, small point-like sources (<1mm diam.) are useful for testing system performance. Slightly larger sources (1-3 mm) can also be used to mimic tumors. Ideal sources should have high uptake of TcO4-, and should not be damaged during preparation or handling. Various crystalline minerals are able to adsorb a variety of chemical species, and may satisfy these criteria. We evaluated the utility of a number of such materials for μSPECT and μPET imaging. Initial tests of 12 different types of crystalline minerals convinced us that the following five materials were promising with regard to size, uptake, and physical robustness: (1)PSA diatomaceous earth (2))Isolite calcined diatomaceous earth (3)Profile calcined clay (4)Bear River zeolite (5)ZeoPro lite. Three samples of each material were soaked in a solution of 1,850 MBq/ml TcO4- for 10 min, while three other pieces of each type were soaked for 60 min. Samples were air-dried, scanned for 30 min in the Harvard microSPECT system, and later scanned on a GE Locus microCT to determine the volume and density variation of each piece. Each sample's specific activity was measured by drawing regions on the microSPECT images, which had been reconstructed for 11 iterations of OSEM. After 10 min. of soaking, the uptake varied from a low of 265+/-32 MBq/cc with material 4, up to a high of 850+/-81 MBq/cc with material 3. After 60 min of soaking there was little change in specific activity. Other properties of the 5 zeolites varied considerably. Material 1 is fragile, and easily fragments into smaller pieces. Material 3 was robust to handling, and showed the highest and most uniform uptake, as well as uniform density. Material 2 exhibited variable density, while the zeolite samples (4 and 5) were more uniform in density, with moderate uptake. Uptake comparison with cation and anion exchange beads was also performed. Finally, we conducted preliminary evaluations of the adsorption of 18F-FDG on selected materials, and found similar relative uptake for different materials, except that the average adsorption efficiency of FDG was about an order-of-magnitude less than that of TcO4-, presumably because of differences in molecular size and charge effects.
机译:当评估小动物成像器,小点状光源(<1毫米直径。)是用于测试系统的性能是有用的。稍大源(1-3毫米)也可以用于模拟肿瘤。理想的来源应该有TcO4-的高摄取,并准备或搬运过程中不应被损坏。各种结晶矿物质是能够吸附各种化学物质,并且可以满足这些标准。我们评估了许多这样的材料为μSPECT和μPET成像的效用。 12种不同类型的结晶矿物的初始测试使我们确信以下五个材料关于尺寸,吸收,和物理稳健性有前途的:(1)PSA硅藻土(2))ISOLITE煅烧的硅藻土(3)简介的煅烧粘土( 4)熊河沸石(5)ZeoPro精简版。每种材料的三个样品浸泡在10分钟1850活度/ ml的TcO4-的溶液中,而每一种类型的其他三件中浸泡60分钟。样品在空气中干燥,在哈佛设计MicroSPECT系统扫描30分钟,随后在GE轨迹微CT扫描以确定每一块的体积和密度的变化。每个样品的特异性活性是通过在设计MicroSPECT图像,已被重建为OSEM的11次迭代绘制区域测量。经过10分钟。的浸泡,吸收从265 +/- 32活度/ cc的低变化与材料4,高达850 +/- 81活度/ cc,其中材料3高浸泡有在特定变化不大的60分钟后活动。 5沸石的其它性质相当大的变化。材料1是脆弱的,并且容易片段成较小的片。材料3稳健的处理和显示最高和最均匀的吸收,以及密度均匀。材料2表现出变量密度,而沸石样品(4和5)是更均匀的密度,具有适度的摄取。还进行与阳离子和阴离子交换珠的吸收比较。最后,我们所选择的材料进行18 F-FDG的吸附的初步评估,并发现了类似的相对摄取为不同的材料,不同之处在于FDG的平均吸附效率约为订单的数量级小于TcO4-的,据推测因为在分子大小和电荷效应的差异。

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