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Imaging the unanesthetized rat brain with PET: a feasibility study

机译:用PET成像未麻醉的大鼠大脑:可行性研究

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The current requirement of anesthesia in PET imaging of animals has undesirable effects on the study of neurological systems and limits the types of studies that can be performed. To enable functional studies of the unanesthetized rat brain, the feasibility of a miniaturized PET tomograph that is secured directly to the head of the rat while allowing collective motion of the head and scanner, has been investigated. The proposed geometry is a septa-less, 4 cm-diameter ring tomograph with an axial extent of 2 cm, that fits between the eyes and ears of a typical laboratory rat, positioning nearly the entire brain within the field of view. This geometry allows a normal posture and can be affixed with techniques currently used to secure microdialysis probes in the rat brain. The proposed detectors are state-of-the-art, but commercially available arrays of 2/spl times/2/spl times/10 mm/sup 3/ LSO crystals and matching avalanche photodiode arrays. A realistic mockup of the scanner weighing 125 g was tested on a rat and tolerated well. Studies have been carried out to estimate the performance characteristics of the proposed scanner, which are compared to those of the rodent microPET systems (UCLA prototype and commercial Concorde scanners). The parallax contribution to the spatial resolution at the edge of the brain can be reduced to microPET levels by using 2 layers of 5 mm-long crystals. Sensitivity, deadtime/countrate capability, scatter, and randoms from activity outside the field of view are estimated to be comparable to the microPET systems as well.
机译:动物PET成像中目前对麻醉的要求对神经系统的研究产生了不良影响,并限制了可以进行的研究类型。为了能够对未麻醉的大鼠大脑进行功能研究,已经研究了将微型PET断层扫描仪直接固定在大鼠头部,同时允许头部和扫描仪共同运动的可行性。所提议的几何形状是无间隔,直径为4厘米的环形断层扫描仪,其轴向范围为2厘米,适合于典型实验大鼠的眼睛和耳朵之间,几乎将整个大脑定位在视野内。这种几何形状允许正常的姿势,并且可以与当前用于将微透析探针固定在大鼠脑中的技术固定在一起。提出的检测器是最先进的,但是可商购获得的2 / spl次/ 2 / spl次/ 10mm / sup 3 / LSO晶体阵列和匹配的雪崩光电二极管阵列。在大鼠上测试了重量为125 g的扫描仪的真实模型,并具有良好的耐受性。已经进行了研究以估计所提出的扫描仪的性能特征,并将其与啮齿动物microPET系统(UCLA原型和商用的协和式扫描仪)进行比较。通过使用2层5毫米长的晶体,可以将视差对大脑边缘空间分辨率的贡献降低到microPET水平。灵敏度,停滞时间/计数能力,散射和视野外活动的随机性估计也可与microPET系统相媲美。

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