Thomas Jefferson National Accelerator Facility, Newport News, VA, USA.
Phys Med Biol. 2012 Jul 7;57(13):4195-210. doi: 10.1088/0031-9155/57/13/4195. Epub 2012 Jun 8.
Several positron emitting radioisotopes such as (11)C and (13)N can be used in plant biology research. The (11)CO(2) tracer is used to facilitate plant biology research toward optimization of plant productivity, biofuel development and carbon sequestration in biomass. Positron emission tomography (PET) imaging has been used to study carbon transport in live plants using (11)CO(2). Because plants typically have very thin leaves, little medium is present for the emitted positrons to undergo an annihilation event. The emitted positrons from (11)C (maximum energy 960 keV) could require up to approximately 4 mm of water equivalent material for positron annihilation. Thus many of the positrons do not annihilate inside the leaf, resulting in limited sensitivity for PET imaging. To address this problem we have developed a compact beta-positive, beta-minus particle imager (PhytoBeta imager) for (11)CO(2) leaf imaging. The detector is based on a Hamamatsu H8500 position sensitive photomultiplier tube optically coupled via optical grease to a 0.5 mm thick Eljen EJ-212 plastic scintillator. The detector is equipped with a flexible arm to allow its placement and orientation over or under the leaf to be studied while maintaining the leaf's original orientation. To test the utility of the system the detector was used to measure carbon translocation in a leaf of the spicebush (Lindera benzoin) under two transient light conditions.
几种正电子发射放射性同位素,如 (11)C 和 (13)N,可用于植物生物学研究。(11)CO(2)示踪剂用于促进植物生物学研究,以优化植物生产力、生物燃料开发和生物质中的碳固存。正电子发射断层扫描(PET)成像已用于使用 (11)CO(2)研究活植物中的碳运输。由于植物的叶片通常非常薄,用于发射正电子发生湮没事件的介质很少。(11)C(最大能量 960keV)发射的正电子可能需要多达约 4mm 水等效材料才能发生正电子湮没。因此,许多正电子不会在叶片内湮没,导致 PET 成像的灵敏度有限。为了解决这个问题,我们开发了一种紧凑型β正电子、β负电子粒子成像仪(PhytoBeta 成像仪)用于 (11)CO(2)叶片成像。该探测器基于 Hamamatsu H8500 位置灵敏光电倍增管,通过光学油脂与 0.5mm 厚的 Eljen EJ-212 塑料闪烁体光学耦合。探测器配备了一个灵活的臂,允许在保持叶片原始方向的情况下将其放置和定向在要研究的叶片上方或下方。为了测试系统的实用性,该探测器用于测量在两种瞬态光照条件下,罗勒(Lindera benzoin)叶片中的碳转移。