Amini Kasra, Wittig Cornelius, Saoncella Sofia, Tammisola Outi, Lundell Fredrik, Bagheri Shervin
FLOW, Dept. of Engineering Mechanics, KTH, Stockholm SE-100 44, Sweden.
FLOW and SeRC (Swedish e-Science Research Centre), Dept. of Engineering Mechanics, KTH, Stockholm SE-100 44, Sweden.
Soft Matter. 2025 May 7;21(18):3425-3442. doi: 10.1039/d4sm01537a.
Optical coherence tomography (OCT) has become an indispensable tool for investigating mesoscopic features in soft matter and fluid mechanics. Its ability to provide high-resolution, non-invasive measurements in both spatial and temporal domains bridges critical gaps in experimental instrumentation, enabling the study of complex, confined, and dynamic systems. This review serves as both an introduction to OCT and a practical guide for researchers seeking to adopt this technology. A set of tutorials, complemented by Python scripts, is provided for both intensity- and Doppler-based techniques. The versatility of OCT is illustrated through case studies, including time-resolved velocimetry, particle-based velocity measurements, slip velocity characterization, detection of shear-induced structures, and analysis of fluid-fluid and fluid-structure interactions. Drawing on our experiences, we also present a set of practical guidelines for avoiding common pitfalls.
光学相干断层扫描(OCT)已成为研究软物质和流体力学中介观特征不可或缺的工具。它能够在空间和时间域提供高分辨率、非侵入性测量,弥补了实验仪器中的关键差距,使得对复杂、受限和动态系统的研究成为可能。本综述既是对OCT的介绍,也是为寻求采用该技术的研究人员提供的实用指南。针对基于强度和基于多普勒的技术,提供了一组配有Python脚本的教程。通过案例研究展示了OCT的多功能性,包括时间分辨测速、基于粒子的速度测量、滑移速度表征、剪切诱导结构的检测以及流体-流体和流体-结构相互作用的分析。借鉴我们的经验,我们还提出了一套避免常见陷阱的实用指南。