Li Haoyang, Lu Quan, Wang Zhong, Zhang Wenbo, Wu Yu, Sun Yandong, Hu Yue, Xiao Lehui, Zhong Dongping, Deng Suhui, Hou Shangguo
Institute of Systems and Physical Biology, Shenzhen Bay Laboratory, Shenzhen, China.
Center for Ultrafast Science and Technology, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai, China.
Commun Eng. 2024 Nov 11;3(1):166. doi: 10.1038/s44172-024-00320-2.
Understanding biological activities in cells or deep tissues requires high-speed three-dimensional (3D) imaging. Substantial progress has been made with the emergence of 3D random-access microscopy. However, current solutions for fast 3D random-access imaging remain complex and costly. Herein we propose a simple, cost-effective, and fast 3D random-access confocal microscopy with remote focusing system. Our system shows isotropic response times across the x, y, and z axes, with a 34-fold improvement in axial response time over traditional piezo stages. We demonstrate its volumetric imaging performance with fluorescent particles and live cells. Furthermore, we validate the 3D random-access imaging capability of this system by continuously monitoring the signals in three different planes, showing a refresh rate of 500 Hz on two different positions in 3D. The simplicity, versatility, and affordability of our system promise widespread applications in research and industry.
了解细胞或深层组织中的生物活动需要高速三维(3D)成像。随着3D随机存取显微镜的出现,已经取得了实质性进展。然而,目前用于快速3D随机存取成像的解决方案仍然复杂且昂贵。在此,我们提出了一种具有远程聚焦系统的简单、经济高效且快速的3D随机存取共聚焦显微镜。我们的系统在x、y和z轴上显示出各向同性的响应时间,轴向响应时间比传统压电平台提高了34倍。我们用荧光颗粒和活细胞展示了其体积成像性能。此外,我们通过在三个不同平面上连续监测信号来验证该系统的3D随机存取成像能力,在3D中的两个不同位置显示出500 Hz的刷新率。我们系统的简单性、多功能性和可承受性有望在研究和工业中得到广泛应用。