Institut Langevin Ondes et Images, ESPCI Paris, Université Paris-Sciences-Lettres, CNRS UMR 7587, Inserm U979-1 rue Jussieu, 75005 Paris, France.
Laboratory of Therapeutic Applications of Ultrasound, Inserm U1032-151 cours Albert Thomas, 69003 Lyon, France.
J Biomed Opt. 2016 Dec 1;21(12):126013. doi: 10.1117/1.JBO.21.12.126013.
Optical coherence tomography (OCT) can map the stiffness of biological tissue by imaging mechanical perturbations (shear waves) propagating in the tissue. Most shear wave elastography (SWE) techniques rely on active shear sources to generate controlled displacements that are tracked at ultrafast imaging rates. Here, we propose a noise-correlation approach to retrieve stiffness information from the imaging of diffuse displacement fields using low-frame rate spectral-domain OCT. We demonstrated the method on tissue-mimicking phantoms and validated the results by comparison with classic ultrafast SWE. Then we investigated the in vivo feasibility on the eye of an anesthetized rat by applying noise correlation to naturally occurring displacements. The results suggest a great potential for passive elastography based on the detection of natural pulsatile motions using conventional spectral-domain OCT systems. This would facilitate the transfer of OCT-elastography to clinical practice, in particular, in ophthalmology or dermatology.
光学相干断层扫描 (OCT) 可以通过成像组织中传播的机械扰动(剪切波)来绘制生物组织的硬度。大多数剪切波弹性成像 (SWE) 技术依赖于主动剪切源来产生受控的位移,这些位移在超快成像速度下进行跟踪。在这里,我们提出了一种噪声相关方法,通过使用低帧率光谱域 OCT 对漫射位移场进行成像来获取刚度信息。我们在组织模拟体模上进行了方法验证,并通过与经典的超快 SWE 进行比较来验证结果。然后,我们通过将噪声相关应用于自然发生的位移,在麻醉大鼠的眼睛上研究了体内的可行性。结果表明,使用传统的光谱域 OCT 系统检测自然脉动运动的被动弹性成像具有很大的潜力。这将有助于将 OCT 弹性成像技术应用于临床实践,特别是在眼科或皮肤科。