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Use of an in-field-of-view shield to improve count rate performance of the single crystal layer high-resolution research tomograph PET scanner for small animal brain scans

机译:使用视野内防护罩来提高单晶层高分辨率研究型断层扫描仪PET扫描仪对小动物脑部扫描的计数率性能

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The count rate performance of the single LSO crystal layer high-resolution research tomograph (HRRT-S) PET scanner is limited by the processing speed of its electronics. Therefore, the feasibility of using an in-field-of-view (in-FOV) shield to improve the noise equivalent count rates (NECR) for small animal brain studies was investigated. The in-FOV shield consists of a lead tube of 12 cm length, 6 cm inner diameter and 9 mm wall thickness. It is large enough to shield the activity in the body of a rat or mouse. First, the effect of this shield on NECR was studied. Secondly, a number of experiments were performed to assess the effects of the shield on the accuracy of transmission scan data and, next, on reconstructed activity distribution in the brain. For activities below 150 MBq NECR improved only by 5-10%. For higher activities NECR maxima of 1.2E4 cps at 200 MBq and 2.2E4 cps at 370 MBq were found without and with shield, respectively. Listmode data taken without shield, however, were corrupted for activities above 75 MBq due to data overrun problems (time tag losses) of the electronics. When the shield was used data overrun was avoided up to activities of 150 MBq. For the unshielded part of the phantom, transmission scan data were the same with and without shield. The estimated scatter contribution was approximately 8.5% without and 5.5% with shield. Reconstructed emission data showed a difference up to 5% in the unshielded part of the phantom at 5 mm or more from the edge of the shielding. Of this 5% about 3% results from the difference in the uncorrected scatter contribution. In conclusion, an in-FOV shield can be used successfully in an HRRT PET scanner to improve NECR and accuracy of small animal brain studies. The latter is especially important when high activities are required for tracers with low brain uptake or when multiple animals are scanned simultaneously.
机译:单个LSO晶体层高分辨率研究型X线断层扫描仪(HRRT-S)PET扫描仪的计数率性能受到其电子设备处理速度的限制。因此,研究了在小动物大脑研究中使用视野内(in-FOV)防护罩来改善噪声等效计数率(NECR)的可行性。 FOV内屏蔽由12厘米长,6厘米内径和9毫米壁厚的引线管组成。它足够大,可以掩盖大鼠或小鼠体内的活动。首先,研究了这种屏蔽对NECR的影响。其次,进行了许多实验,以评估防护罩对透射扫描数据的准确性以及接下来对大脑中重建的活动分布的影响。对于低于150 MBq的活动,NECR仅改善5-10%。对于更高的活动,发现不带屏蔽和带屏蔽的NECR最大值分别为200 MBq下为1.2E4 cps和370 MBq下为2.2E4 cps。但是,由于电子设备的数据超限问题(时间标签丢失),对于不超过75 MBq的活动,未屏蔽的列表模式数据已损坏。使用防护罩时,可以避免数据超载,直到活动达到150 MBq。对于体模的非屏蔽部分,带屏蔽和不带屏蔽的传输扫描数据相同。不使用屏蔽层时,估计的散射贡献约为8.5%,使用屏蔽层时,约为5.5%。重建的发射数据显示,在距屏蔽边缘5mm或更远处的模型的未屏蔽部分中,相差最多5%。在这5%中,约3%来自未校正的散射贡献的差异。总之,可以在HRRT PET扫描仪中成功使用FOV内防护罩,以提高NECR和小动物大脑研究的准确性。当对于脑部摄取量低的示踪剂需要较高的活动性或同时扫描多只动物时,后者尤其重要。

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