Wang Zhi, Qiao Wei, Jiang Tao, Chen Siqi, Lu Bolin, Ning Kefu, Jin Rui, Gong Hui, Yuan Jing
Wuhan National Laboratory for Optoelectronics, Britton Chance Center for Biomedical Photonics, Huazhong University of Science and Technology, Wuhan, China.
MoE Key Laboratory for Biomedical Photonics, School of Engineering Sciences, Huazhong University of Science and Technology, Wuhan, China.
Front Neurosci. 2022 Oct 18;16:1032195. doi: 10.3389/fnins.2022.1032195. eCollection 2022.
Inverted light-sheet microscopy (ILSM) is widely employed for fast large-volume imaging of biological tissue. However, the scattering especially in an uncleared sample, and the divergent propagation of the illumination beam lead to a trade-off between axial resolution and imaging depth. Herein, we propose naturally modulated ILSM (NM-ILSM) as a technique to improve axial resolution while simultaneously maintaining the wide field-of-view (FOV), and enhancing imaging contrast background suppression. Theoretical derivations, simulations, and experimental imaging demonstrate 15% axial resolution increases, and fivefold greater image contrast compared with conventional ILSM. Therefore, NM-ILSM allows convenient imaging quality improvement for uncleared tissue and could extend the biological application scope of ILSM.
倒置光片显微镜(ILSM)被广泛用于生物组织的快速大体积成像。然而,尤其是在未清除的样本中存在散射,以及照明光束的发散传播导致轴向分辨率和成像深度之间存在权衡。在此,我们提出自然调制倒置光片显微镜(NM-ILSM)作为一种技术,以提高轴向分辨率,同时保持宽视野(FOV),并增强成像对比度和背景抑制。理论推导、模拟和实验成像表明,与传统ILSM相比,轴向分辨率提高了15%,图像对比度提高了五倍。因此,NM-ILSM可为未清除组织提供便捷的成像质量提升,并可扩展ILSM的生物应用范围。