课题基金 / 基金详情

Development of an X-band Crossed-loop Resonator for Biological EPR

Development of an X-band Crossed-loop Resonator for Biological EPR
用于生物 EPR 的 X 波段交叉环谐振器的开发
批准号:
6989824
负责人:
George Allen Rinard
金额:
$9.97万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-09-23 至 2007-08-31

项目摘要

项目成果

George Allen Rinard的其他基金

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中文摘要
翻译
描述(由申请人提供):项目摘要-EPR是一种独特的强大且广泛使用的工具,用于解决从自由基生成到蛋白质结构再到活体成像的生物医学问题。在商用X波段(8-12 GHz)反射式谐振器中,生物样品的EPR信噪比(S/N)往往很差。以前的工作已经表明,使用透射型或双峰型谐振器可以显著改善S/N。这种被称为交叉环谐振器(CLR)的谐振器已经被开发出来,并在3 GHz及以下的频率下得到了非常有效的使用,并在9.5 GHz(X波段)构建了原型。利用以前CLR中获得的经验,X波段CLR的两个版本分别为4 mm和3 mm。将设计和测试与商用EPR光谱仪兼容的样品管。成功的标准将是易于操作,减少脉冲后的停滞时间,以及提高脉冲EPR的信噪比。具体目标是:1.设计一种与商用EPR光谱仪兼容的X波段共振子振荡器。2.建造直径为4 mm和3 mm的X波段CLR。样品管。3.测量电学参数,并与预测值进行比较。4.在研究实验室和商业实验室测试CLR之间的权衡。5.推动X波段CLR商业化。相关性-研究生物体系中的自由基需要商业光谱仪所不具备的增强技术。X波段交叉环谐振器将扩展自由基的研究范围,促进对蛋白质结构、组织中自由基的形成和疾病原因的新见解。拟议项目的主要目标是将这种新型谐振器的技术从发明它的研究实验室转移到一家小公司,该公司将把它作为商业产品进行开发,以便它可以在许多实验室使用。
英文摘要
DESCRIPTION (provided by applicant): Project Summary- EPR is a uniquely powerful and widely used tool for solving biomedical problems, from free radical generation to protein structure to in vivo imaging. Too often the EPR signal-to-noise (S/N) is poor for biological samples in commercial X-band (8-12 GHz) reflection type resonators. Previous work has shown that the S/N can be significantly improved by the use of a transmission, or bimodal, type resonator. Such a resonator, called a crossed-loop resonator (CLR), has been developed and used very effectively at frequencies of 3 GHz and below, and prototypes have been constructed at 9.5 GHz (X-band). Using the experience gained in previous CLRs, 2 versions of X band CLRs for 4 mm and 3 mm o.d. sample tubes compatible with commercial EPR spectrometers will be designed and tested. Criteria for success will be ease of operation, reduced dead time after a pulse, and improved signal-to-noise ratio in pulsed EPR. The Specific Aims are: 1. Design an X-band CLR compatible with commercial EPR spectrometers. 2. Build X-band CLRs for 4 mm and 3 mm o.d. sample tubes. 3. Measure the electrical parameters and compare with those predicted. 4. Test trade-offs between the CLRs in research and commercial laboratories. 5. Promote the commercialization of the X-band CLR. Relevance- Study of free radicals in biological systems requires enhanced technology not available in commercial spectrometers. The X-band cross loop resonator will extend the range of studies of free radicals, facilitating new insights into structure of proteins, formation of free radicals in tissues, and the causes of diseases. The major aim of the proposed project is to transfer the technology for this new type resonator from the research lab in which it was invented to a small company that will develop it as a commercial product so that it can be used in many laboratories.
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