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A Method for Characterization of PhytoPET in Plant Growth Media

机译:植物生长培养基中植物植物表征的方法

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A positron emission tomography (PET) system (PhytoPET) designed specifically for plant biology imaging is being developed for use at the Duke University Biology Department Phytotron. The system has a modular design to accommodate various shapes and sizes of plants and plant structures. The target isotope, ~(11)C in ~(11)CO_2 gas, is absorbed by the leaf through photosynthesis then converted to sugars, and translocated to other parts of the plant. A large fraction of positrons from ~(11)C can escape from thin leaves without annihilation, while in the root a large fraction of positrons annihilate because of surrounding materials such as water or soil. Since the PhytoPET system can be used for imaging both leaves and roots, it is required to characterize system performance with various surrounding materials. A capillary tube phantom was designed and fabricated to allow placement within different absorbing media such as air, water, and soil. We report on sensitivity and spatial resolution measurements of the PhytoPET system using this phantom.
机译:专为植物生物成像设计的正电子发射断层扫描(PET)系统(PHYTOPET)正在开发用于Duke University Departmine Phytotron。该系统具有模块化设计,可容纳植物和植物结构的各种形状和大小。靶同位素,〜(11)C在〜(11)CO_2气体中,通过光合作用被叶子吸收,然后将其转化为糖,并易于植物的其他部分。来自〜(11)C的大部分正数可以从薄叶中逸出而不会湮灭,而在根部中,由于水或土壤如诸如水或土壤的周围材料,彻底的积极湮灭。由于植物藻体系可用于成像叶子和根,因此需要具有各种周围材料的系统性能。设计和制造毛细管幻影,以允许放置在不同吸收介质内,例如空气,水和土壤。我们报告了使用该幻影植物植物系统的灵敏度和空间分辨率测量。

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