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OCT-based approach to local relaxations discrimination from translational relaxation motions

机译:基于OCT基础的局部放松辨别的辨别释放动作

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Multimodal optical coherence tomography (OCT) is an emerging tool for tissue state characterization. Optical coherence elastography (OCE) is an approach to mapping mechanical properties of tissue based on OCT. One of challenging problems in OCE is elimination of the influence of residual local tissue relaxation that complicates obtaining information on elastic properties of the tissue. Alternatively, parameters of local relaxation itself can be used as an additional informative characteristic for distinguishing the tissue in normal and pathological states over the OCT image area. Here we briefly present an OCT-based approach to evaluation of local relaxation processes in the tissue bulk after sudden unloading of its initial pre-compression. For extracting the local relaxation rate we evaluate temporal dependence of local strains that are mapped using our recently developed hybrid phase resolved/displacement-tracking (HPRDT) approach. This approach allows one to subtract the contribution of global displacements of scatterers in OCT scans and separate the temporal evolution of local strains. Using a sample excised from of a coronary arteria, we demonstrate that the observed relaxation of local strains can be reasonably fitted by an exponential law, which opens the possibility to characterize the tissue by a single relaxation time. The estimated local relaxation times are assumed to be related to local biologically-relevant processes inside the tissue, such as diffusion, leaking/draining of the fluids, local folding/unfolding of the fibers, etc. In general, studies of evolution of such features can provide new metrics for biologically-relevant changes in tissue, e.g., in the problems of treatment monitoring.
机译:多模式光学相干断层扫描(OCT)是一种用于组织状态表征的新兴工具。光学相干弹性术(OCE)是基于OCT映射组织机械性能的方法。 OCE有挑战性的问题是消除残留局部组织松弛的影响使得有关组织弹性性质的获取信息。或者,局部弛豫本身的参数可以用作在OCT图像区域上区分组织在正常和病理状态下区分组织的额外信息特征。在这里,我们简要介绍了基于OCT基础的方法来评估组织散装中的局部松弛过程后突然卸下其初始预压缩。为了提取局部松弛率,我们评估使用我们最近开发的混合相位分辨/位移跟踪(HPRDT)方法映射的局部菌株的时间依赖性。这种方法允许一个人在OCT扫描中减去全球位移的散射者的贡献,并分离局部菌株的时间演变。使用来自冠状动脉的动脉切除的样本,我们证明了局部应变的观测松弛可以通过指数规律,这将打开一个单独的弛豫时间来表征组织的可能性进行合理配备。假设估计的本地弛豫时间与组织内的局部生物学相关过程有关,例如流体的扩散,泄漏/排水,纤维的局部折叠/展开等。一般来说,这些特征的演变研究可以为组织中的生物学相关变化提供新的指标,例如治疗监测问题。

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