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Accurately Characterized Optical Tissue Phantoms: How, Why and When?

机译:准确表征的光学组织体模:如何,为什么以及何时?

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摘要

Optical tissue phantoms are very important tools for the development of biomedical imaging applications. Optical phantoms are often used as ground truth against which instruments results can be compared. It is therefore important that the optical properties of reference phantoms be measured in a manner that is traceable to the international system of units. SI traceability insures long term consistency of results and will therefore improve the effectiveness of diffuse optics research effort more effective by reducing unwanted variability in the data produced and shared by the community. The ultimate benefit of rigorous SI traceability is the reduction of variability in the data produced by novel diagnostic devices, which will in turn increase the statistical power of clinical trials aiming at validating their clinical usefulness. SI traceability, and therefore uncertainty analysis, is also relevant to traceability aspects mandated by FDA regulations. SI traceability is achieved through a thorough analysis of the measurement principle and its potential error sources. The uncertainty analysis should be ultimately validated by inter-laboratory comparison until a consensus is attained on the best practices for measuring the optical properties of tissue phantoms.
机译:光学组织体模是生物医学成像应用程序开发中非常重要的工具。光学体模通常被用作地面真相,可以将其与仪器结果进行比较。因此,重要的是要以可追溯到国际单位制的方式测量参考体模的光学特性。 SI的可追踪性确保了结果的长期一致性,因此将通过减少社区产生和共享的数据的不必要的可变性来提高漫射光学研究工作的有效性。严格的SI可追溯性的最终好处是减少了新型诊断设备产生的数据的变异性,这反过来又会提高旨在验证其临床实用性的临床试验的统计能力。 SI的可追溯性以及不确定性分析也与FDA法规要求的可追溯性有关。通过对测量原理及其潜在误差源进行全面分析,可以实现SI的可追溯性。不确定性分析应最终通过实验室间的比较进行验证,直到就测量组织体模光学特性的最佳做法达成共识。

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