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Development of radionuclide based instrumentation for the quantitative study of plant physiology

机译:基于放射性核素的植物生理学定量研究仪器的开发

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Renewable biofuels are primary research targets as sources for sustainable, net-zero-carbon, alternative energy. In this vein, we are developing an imaging device for whole plant measurement of vascular and metabolic processes. It will provide new information geared towards increasing the output of biofuels and the resilience of plant feedstock. Single Photon Emission Computer Tomography (SPECT) is a commonly used medical imaging technique capable of creating three dimensional images as well as time-lapsed, four dimensional images. SPECT relies upon the administration of radionuclides that emit photons at discrete energies. Establishing uptake and detectable emission threshold levels of delivered activity to a SPECT imaging subject is essential for successful quantitative studies. We present application of radionuclide based uptake and decay measurement of the commonly used medical isotope, 99mTc, to the quantitative study of Populus deltoids physiology for the purposes of developing this species as a lignocellulose based biofuel feedstock.
机译:可再生生物燃料是初级研究目标,作为可持续,净零碳,替代能源的来源。在该静脉中,我们正在开发一种成像装置,用于血管和代谢过程的全植物测量。它将提供新的信息,用于增加生物燃料的输出和植物原料的弹性。单光子发射计算机断层扫描(SPECT)是一种常用的医学成像技术,其能够创建三维图像以及时间失效,四维图像。 Spect依赖于在离散能量下发射光子的放射性核素的给药。建立对SPECT成像对象的输送活性的吸收和可检测的发射阈值水平对于成功的定量研究至关重要。我们展示了常用的医疗同位素的放射性核素的摄取和衰变测量施用常用的医疗同位素, 99m Tc,以便在杨树肽生理学的定量研究中,以便在将该物种中发展为基于木质纤维素的生物燃料原料。

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