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A Microperfusion and In-Bore Oxygenator System Designed for Magnetic Resonance Microscopy Studies on Living Tissue Explants

机译:设计用于活组织外植体的磁共振显微镜研究的微灌注和孔内充氧器系统

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摘要

Spectrometers now offer the field strengths necessary to visualize mammalian cells but were not designed to accommodate imaging of live tissues. As such, spectrometers pose significant challenges—the most evident of which are spatial limitations—to conducting experiments in living tissue. This limitation becomes problematic upon trying to employ commercial perfusion equipment which is bulky and—being designed almost exclusively for light microscopy or electrophysiology studies—seldom includes MR-compatibility as a design criterion. To overcome problems exclusive to ultra-high magnetic field environments with limited spatial access, we have designed microperfusion and in-bore oxygenation systems capable of interfacing with Bruker’s series of micro surface-coils. These devices are designed for supporting cellular resolution imaging in MR studies of excised, living tissue. The combined system allows for precise control of both dissolved gas and pH levels in the perfusate thus demonstrating applicability for a wide range of tissue types. Its compactness, linear architecture, and MR-compatible material content are key design features intended to provide a versatile hardware interface compatible with any NMR spectrometer. Such attributes will ensure the microperfusion rig’s continued utility as it may be used with a multitude of contemporary NMR systems in addition to those which are currently in development.
机译:现在,光谱仪提供了可视化哺乳动物细胞所必需的场强,但并未设计为适应活组织的成像。因此,光谱仪对在活组织中进行实验提出了重大挑战,其中最明显的是空间限制。在尝试使用笨重的商业灌注设备时,此限制变得很棘手,并且几乎只针对光学显微镜或电生理研究而设计,而很少将MR兼容性作为设计标准。为了克服空间受限的超高磁场环境所独有的问题,我们设计了微灌流和孔内充氧系统,可以与布鲁克的一系列微表面线圈接口。这些设备旨在支持在切除的活组织的MR研究中进行细胞分辨率成像。组合系统可精确控制灌注液中的溶解气体和pH值,从而证明适用于多种组织类型。它的紧凑性,线性结构和与MR兼容的材料含量是关键设计功能,旨在提供与任何NMR光谱仪兼容的通用硬件接口。这些属性将确保微灌装设备的持续使用,因为除了目前正在开发的系统以外,它还可与许多现代NMR系统一起使用。

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