Leibniz Institute of Photonic Technology, Albert-Einstein-Straße 9, D-07745 Jena, Germany.
Lab Chip. 2021 Sep 28;21(19):3655-3666. doi: 10.1039/d1lc00533b.
Within the last decades, conventional flow cytometry (FC) has evolved as a powerful measurement method in clinical diagnostics, biology, life sciences and healthcare. Imaging flow cytometry (IFC) extends the power of traditional FC by adding high resolution optical and spectroscopic information. However, the conventional IFC only provides a 2D projection of a 3D object. To overcome this limitation, tomographic imaging flow cytometry (tIFC) was developed to access 3D information about the target particles. The goal of tIFC is to visualize surfaces and internal structures in a holistic way. This review article gives an overview of the past and current developments in tIFC.
在过去的几十年中,传统的流式细胞术(FC)已经发展成为临床诊断、生物学、生命科学和医疗保健领域的一种强大的测量方法。成像流式细胞术(IFC)通过添加高分辨率的光学和光谱信息来扩展传统 FC 的功能。然而,传统的 IFC 仅提供了 3D 对象的 2D 投影。为了克服这一限制,层析成像流式细胞术(tIFC)被开发出来,以获取有关目标粒子的 3D 信息。tIFC 的目标是全面可视化表面和内部结构。本文综述了 tIFC 的过去和当前的发展。