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Dynamic phase-sensitive optical coherence elastography at a true kilohertz frame-rate

机译:动态相位敏感光学相干弹性术以真正的千赫兹帧速率

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Dynamic optical coherence elastography (OCE) techniques have rapidly emerged as a noninvasive way to characterize the biomechanical properties of tissue. However, clinical applications of the majority of these techniques have been unfeasible due to the extended acquisition time because of multiple temporal OCT acquisitions (M-B mode). Moreover, multiple excitations, large datasets, and prolonged laser exposure prohibit their translation to the clinic, where patient discomfort and safety are critical criteria. Here, we demonstrate the feasibility of noncontact true kilohertz frame-rate dynamic optical coherence elastography by directly imaging a focused air-pulse induced elastic wave with a home-built phase-sensitive OCE system. The OCE system was based on a 4X buffered Fourier Domain Mode Locked swept source laser with an A-scan rate of~1.5 MHz, and imaged the elastic wave propagation at a frame rate of~7.3 kHz. Because the elastic wave directly imaged, only a single excitation was utilized for one line scan measurement. Rather than acquiring multiple temporal scans at successive spatial locations as with previous techniques, here, successive B-scans were acquired over the measurement region (B-M mode). Preliminary measurements were taken on tissue-mimicking agar phantoms of various concentrations, and the results showed good agreement with uniaxial mechanical compression testing. Then, the elasticity of an in situ porcine cornea in the whole eye-globe configuration at various intraocular pressures was measured. The results showed that this technique can acquire a depth-resolved elastogram in milliseconds. Furthermore, the ultra-fast acquisition ensured that the laser safety exposure limit for the cornea was not exceeded.
机译:动态光学相干弹性术(OCE)技术迅速出现为表征组织生物力学性质的非侵入性方式。然而,由于多个时间OCT采集(M-B模式),由于延长的采集时间,大多数这些技术的临床应用是不可行的。此外,多种激励,大型数据集和延长的激光曝光禁止它们与诊所的翻译,其中患者的不适和安全性是关键标准。在这里,我们通过直接成像聚焦的空气脉冲诱导的弹性波与家庭相互敏感的OCE系统直接成像,展示了非接触真千赫兹帧速率动态光学相干性弹性术的可行性。 OCE系统基于4倍缓冲的傅立叶域模式锁定的扫描源激光器,扫描速率为约1.5MHz,并以约7.3kHz的帧速率成像弹性波传播。因为弹性波直接成像,所以仅利用单一激励进行一行扫描测量。在这里,在这里,通过测量区域(B-M模式)获取连续的B扫描,而不是以先前的技术获取连续的空间位置的多个时间扫描。对各种浓度的组织模拟琼脂映射进行初步测量,结果表明,与单轴机械压缩测试吻合良好。然后,测量在各种眼球压力下在各种眼球压力下在整个眼球压力下的原位猪角膜的弹性。结果表明,该技术可以以毫秒为单位获取深度分辨的弹性图。此外,超快速采集确保了未超过角膜的激光安全暴露极限。

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