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Multi-Channel Optical Coherence Elastography Using Relative and Absolute Shear-Wave Time of Flight

机译:使用相对和绝对剪切波飞行时间的多通道光学相干弹性成像

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摘要

Elastography, the imaging of elastic properties of soft tissues, is well developed for macroscopic clinical imaging of soft tissues and can provide useful information about various pathological processes which is complementary to that provided by the original modality. Scaling down of this technique should ply the field of cellular biology with valuable information with regard to elastic properties of cells and their environment. This paper evaluates the potential to develop such a tool by modifying a commercial optical coherence tomography (OCT) device to measure the speed of shear waves propagating in a three-dimensional (3D) medium. A needle, embedded in the gel, was excited to vibrate along its long axis and the displacement as a function of time and distance from the needle associated with the resulting shear waves was detected using four M-mode images acquired simultaneously using a commercial four-channel swept-source OCT system. Shear-wave time of arrival (TOA) was detected by tracking the axial OCT-speckle motion using cross-correlation methods. Shear-wave speed was then calculated from inter-channel differences of TOA for a single burst (the relative TOA method) and compared with the shear-wave speed determined from positional differences of TOA for a single channel over multiple bursts (the absolute TOA method). For homogeneous gels the relative method provided shear-wave speed with acceptable precision and accuracy when judged against the expected linear dependence of shear modulus on gelatine concentration (R2 = 0.95) and ultimate resolution capabilities limited by 184μm inter-channel distance. This overall approach shows promise for its eventual provision as a research tool in cancer cell biology. Further work is required to optimize parameters such as vibration frequency, burst length and amplitude, and to assess the lateral and axial resolutions of this type of device as well as to create 3D elastograms.
机译:弹性成像(软组织的弹性成像)已经很好地开发用于软组织的宏观临床成像,并且可以提供有关各种病理过程的有用信息,这些信息与原始模态所提供的信息是互补的。缩减该技术应在细胞生物学领域提供有关细胞弹性特性及其环境的有价值的信息。本文评估了通过修改商用光学相干断层扫描(OCT)设备以测量在三维(3D)介质中传播的剪切波的速度来开发这种工具的潜力。嵌入到凝胶中的一根针被激发沿其长轴振动,并通过使用同时使用市售的4个M型图像同时获取的4个M模式图像来检测与所产生的剪切波相关的位移与时间和与针的距离的关系。通道扫频OCT系统。通过使用互相关方法跟踪轴向OCT斑点运动来检测剪切波到达时间(TOA)。然后根据单个突发的TOA的通道间差异计算剪切波速度(相对TOA方法),并将其与根据多个突发的单个信道的TOA位置差异确定的剪切波速度进行比较(绝对TOA方法) )。对于均质凝胶,相对于预期的剪切模量对明胶浓度的线性依赖关系(R 2 = 0.95)和极限分离能力受184μminter限制,相对方法提供的剪切波速度具有可接受的精度和准确度。 -通道距离。这种整体方法显示出有望最终用作癌细胞生物学的研究工具。需要进一步的工作来优化诸如振动频率,脉冲串长度和振幅之类的参数,并评估此类设备的横向和轴向分辨率,并创建3D弹性图。

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