使用 Oringinpro 对人体各种组织的核磁共振磁化率进行数值计算

Bilyaminu Usman, Ahmed Jimoh
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引用次数: 0

摘要

核磁共振(NMR)光谱和成像是当今生物医学研究中应用最广泛的技术。核磁共振波谱是一种功能强大的理论分析技术。自核磁共振波谱技术发展以来,它已成为医学领域中一项非常重要的技术,因为它比对人体有辐射影响的 X 射线冷冻成像技术更安全。核磁共振技术最吸引人的特点是,使用这些方法可以研究广泛的生物1 学1 过程,而且可以应用多种多样的特定核磁共振技术来诊断疾病。随着计算机程序的出现,人们还开发了不同的核磁共振光谱计算机程序,用于对电磁辐射如何与各种物质相互作用进行不同的分析。这项研究使用 Originpro 对人体的不同组织进行核磁共振分析。研究调查了人体的各种组织,借助布洛赫流动方程获得了横向磁化方程,用于绘制不同组织的横向磁化图。不同生物组织的三种不同弛豫时间分别为 0.5 T、1.0 T 和 1.5 T。不同组织的横向磁化是在不同磁通密度、0-0.02 秒和组织长度为 4.5x10-12 到 4.5x10-m 的范围内进行计算的。结果表明,在 0.5 T 时,4.5x10-12 至 4.5x10-5 m 范围内的组织的横向磁化较大。
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Numerical Computation of NMR Magnetization for Various Tissues in the Human Body Using Oringinpro
Nuc1ear magnetic resonance (NMR) spectroscopy and imaging arexarguab1y the most versati1e techniques use in biomedica1 research today. NMR spectroscopy is a powerfu1 and theoretica1 ana1ytica1 too1s. Since the deve1opment of NMR spectroscopy it is has become a very important too1s in the fie1d of medicine because of it being safer than the X-ray crysta11ography which has radiation effects on the human body. The most attractive features of NMR techniques are the wide range of bio1ogica1 processes that can be investigated using these methods and the variety and versati1ity of the specific MR techniques that can be app1ied. diagnosis of diseases. With the advent of computer programme, different computer programme has a1so being deve1oped for NMR spectroscopy for performing different ana1ysis on how e1ectromagnetic radiation interact with various form of matter. This research perform NMR ana1ysis of different tissue in the human body using Originpro. The research investigates various tissues of the human body, with the aid of Bloch flow equation the research obtained the transverse magnetization equation that was used for the tranverse magnetization map for the different tissues. Three different relaxation times consider for the different biological tissues are 0.5 T, 1.0 T and 1.5 T. The transverse magnetization for the various tissues are ca1cu1ated at different magnetic f1ux density, at range of 0-0.02 seconds and a length for the tissues were in the range of 4.5x10-12 to 4.5x10-m. The result shows that transverse magnetization was greater at 0.5 T for the tissues considered at the range of 4.5x10-12 to 4.5x10-5 m.
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