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首页> 外文期刊>Nuclear Medicine Communications >Applicability of a high-resolution small semiconductor gamma camera to small animal imaging.
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Applicability of a high-resolution small semiconductor gamma camera to small animal imaging.

机译:高分辨率小型半导体伽马相机对小动物成像的适用性。

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摘要

OBJECTIVE: Recently, small semiconductor gamma cameras (SSGCs) with high resolution and sensitivity, which are much more convenient to use as compared with SPECT and PET, have been developed for mapping the sentinel lymph node. The high resolution and sensitivity of the SSGCs may make them useful for small animal imaging. Therefore, we assessed the applicability of the SSGC to small animal imaging using a rat model of focal cerebral ischaemia. METHODS: The right middle cerebral artery (MCA) of anaesthetized rats was occluded intraluminally with a nylon monofilament. Twenty-four hours after the occlusion, Tc-HMPAO (3.7 MBq) was injected and a static acquisition (5 min) was performed using the SSGC. Regions of interest (ROIs) were set on each hemisphere of the horizontal brain images. After the acquisition, the brains were removed and the radioactivity in each hemisphere was measured using an NaI scintillation counter. RESULTS: Reduced CBF in the right MCA territory was clearly visualized with the SSGC in vivo. The radioactivity in the ROIs determined by the SSGC was significantly correlated with that determined by the ex vivo counting method (P<0.001, R=0.74). Furthermore, in both of the in-vivo imaging and ex-vivo counting methods, the right to left count ratio (R/L ratio) was significantly lower in the MCA-occluded rats than that in normal rats (MCA-occluded rats: 0.77+/-0.08, normal rats: 1.01+/-0.07, P<0.005). CONCLUSIONS: The SSGC clearly visualized and quantitatively detected the reduced CBF in MCA-occluded rats. Furthermore, these high resolution and sensitivity of SSGC can avoid the disadvantage of small animal imaging with PET and SPECT, such as a large mass injected tracer and the exposure of investigators to radiation. Thus, the high resolution and sensitivity of the SSGC make it useful for small animal imaging.
机译:目的:近来已开发出高分辨率和高灵敏度的小型半导体伽马相机(SSGC),与SPECT和PET相比,使用起来更加方便,可以绘制前哨淋巴结。 SSGC的高分辨率和灵敏度可能使它们可用于小型动物成像。因此,我们使用局灶性脑缺血大鼠模型评估了SSGC在小动物成像中的适用性。方法:将麻醉的大鼠右大脑中动脉(MCA)用尼龙单丝腔内封闭。闭塞后24小时,注入Tc-HMPAO(3.7 MBq),并使用SSGC进行静态采集(5分钟)。在水平脑图像的每个半球上设置感兴趣区域(ROI)。采集后,取出大脑,并使用NaI闪烁计数器测量每个半球的放射性。结果:体内SSGC可以清楚地看到右侧MCA区域的CBF降低。 SSGC测定的ROI中的放射性与离体计数方法测定的放射性显着相关(P <0.001,R = 0.74)。此外,在体内成像和离体计数方法中,MCA阻塞大鼠的左右计数比(R / L比)均显着低于正常大鼠(MCA阻塞大鼠:0.77) +/- 0.08,正常大鼠:1.01 +/- 0.07,P <0.005)。结论:SSGC清晰地观察并定量检测了MCA闭塞大鼠的CBF降低。此外,SSGC的这些高分辨率和灵敏度可以避免使用PET和SPECT进行小动物成像的缺点,例如大量注入的示踪剂以及研究者暴露于辐射下。因此,SSGC的高分辨率和灵敏度使其可用于小型动物成像。

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