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T_1 Measurement by NMR Inversion Recovery: An Upper-Division Undergraduate Experiment in Advanced NMR Techniques Demonstrating the Concept of Contrast-Enhanced MRI

机译:通过NMR反演恢复的T_1测量:高级NMR技术中的大师本科实验展示了对比度增强MRI的概念

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摘要

Nuclear magnetic resonance (NMR) spectroscopy is the tool of choice for organic chemists to determine the molecular structure of organic molecules and, as a result, is a fundamental topic in the organic chemistry curriculum. A novel laboratory module has been developed to expand the scope of NMR spectroscopy beyond structure validation at the undergraduate level to include how organic chemistry and FT-NMR spectroscopy are directly related to contrast-assisted magnetic resonance imaging (MRI). This laboratory module allows students to synthesize commercially available MRI contrast agents and exposes students to the important concepts of longitudinal relaxation time (T_1) and relaxation rate (r_1), and how both properties can be enhanced by paramagnetic contrast agents. By using an NMR spectrometer for inversion recovery experiments, students will be able to bridge the concepts of NMR and MRI, while understanding how organic chemistry plays a vital role in a technology that revolutionized diagnostic and therapeutic medicine.
机译:核磁共振(NMR)光谱是有机化学家确定有机分子分子结构的首选工具,因此是有机化学课程中的一个基本主题。已经开发了一个新的实验室模块,将NMR波谱的范围扩展到本科水平的结构验证之外,包括有机化学和FT-NMR波谱与对比辅助磁共振成像(MRI)的直接关系。本实验室模块允许学生合成商用MRI造影剂,并让学生了解纵向弛豫时间(T_1)和弛豫率(r_1)的重要概念,以及顺磁造影剂如何增强这两种特性。通过使用核磁共振波谱仪进行反转恢复实验,学生们将能够在核磁共振和核磁共振的概念之间架起桥梁,同时了解有机化学如何在一项革命性的诊断和治疗医学技术中发挥重要作用。

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