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Imaging techniques in acute kidney injury.

机译:急性肾损伤的成像技术。

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Multi-photon microscopy, along with advances in other imaging modalities, allows investigators the opportunity to study dynamic events within the functioning kidney. These emerging technologies enable investigators to follow complex heterogeneous processes in organs such as the kidney with improved spatial and temporal resolution, and sensitivity. Furthermore, the ability to obtain volumetric data (3-D) makes quantitative 4-D (time) analysis possible. Finally, use of up to three fluorophores concurrently in multi-photon microscopy allows for three different or interactive processes to be observed simultaneously. Therefore, this approach complements existing molecular, biochemical, pharmacologic and radiologic techniques by advancing data analysis and interpretation to subcellular levels for molecules without the requirement for fixation. Its use in acute kidney injury is in its infancy but offers much promise for unraveling the complex interdependent processes known to contribute to cell injury and organ failure. Also, recent advances in other imaging techniques offer potential clinical diagnostic tools to study acute kidney injury in animal models and in patients.
机译:多光子显微镜,以及其他成像方式的进步,使研究者有机会研究功能性肾脏内的动态事件。这些新兴技术使研究人员能够以改善的时空分辨率和敏感性,追踪肾脏等器官中复杂的异质过程。此外,获得体积数据(3-D)的能力使定量4-D(时间)分析成为可能。最后,在多光子显微镜中同时使用多达三个荧光团可以同时观察到三个不同或相互作用的过程。因此,这种方法通过将数据分析和解释推进到分子的亚细胞水​​平而无需固定,从而补充了现有的分子,生化,药理和放射学技术。它在急性肾损伤中的应用尚处于初期,但为揭开已知导致细胞损伤和器官衰竭的复杂相互依存过程提供了广阔前景。另外,其他成像技术的最新进展为研究动物模型和患者的急性肾损伤提供了潜在的临床诊断工具。

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