Chen Bingying, Chang Bo-Jui, Zhou Felix Y, Daetwyler Stephan, Sapoznik Etai, Nanes Benjamin A, Terrazas Isabella, Gihana Gabriel M, Castro Lizbeth Perez, Chan Isaac S, Conacci-Sorrell Maralice, Dean Kevin M, Millett-Sikking Alfred, York Andrew G, Fiolka Reto
Lyda Hill Department of Bioinformatics, UT Southwestern Medical Center, Dallas, Texas, USA.
Department of Dermatology, UT Southwestern Medical Center, Dallas, Texas, USA.
Biomed Opt Express. 2022 Oct 4;13(11):5616-5627. doi: 10.1364/BOE.467969. eCollection 2022 Nov 1.
Fast volumetric imaging of large fluorescent samples with high-resolution is required for many biological applications. Oblique plane microscopy (OPM) provides high spatiotemporal resolution, but the field of view is typically limited by its optical train and the pixel number of the camera. Mechanically scanning the sample or decreasing the overall magnification of the imaging system can partially address this challenge, albeit by reducing the volumetric imaging speed or spatial resolution, respectively. Here, we introduce a novel dual-axis scan unit for OPM that facilitates rapid and high-resolution volumetric imaging throughout a volume of 800 × 500 × 200 microns. This enables us to perform volumetric imaging of cell monolayers, spheroids and zebrafish embryos with subcellular resolution. Furthermore, we combined this microscope with a multi-perspective projection imaging technique that increases the volumetric interrogation rate to more than 10 Hz. This allows us to rapidly probe a large field of view in a dimensionality reduced format, identify features of interest, and volumetrically image these regions with high spatiotemporal resolution.
许多生物学应用都需要对大型荧光样本进行高分辨率的快速体积成像。斜平面显微镜(OPM)提供了高时空分辨率,但其视场通常受限于其光学系统和相机的像素数量。机械扫描样本或降低成像系统的整体放大倍数可以部分解决这一挑战,尽管这会分别降低体积成像速度或空间分辨率。在此,我们为OPM引入了一种新型双轴扫描单元,该单元有助于在800×500×200微米的体积内进行快速且高分辨率的体积成像。这使我们能够以亚细胞分辨率对细胞单层、球体和斑马鱼胚胎进行体积成像。此外,我们将这种显微镜与多视角投影成像技术相结合,将体积询问速率提高到了10 Hz以上。这使我们能够以降维格式快速探测大视场,识别感兴趣的特征,并以高时空分辨率对这些区域进行体积成像。