A practical guide to light-sheet microscopy for nanoscale imaging: Looking beyond the cell.

IF 2.7 3区 物理与天体物理 Q2 PHYSICS, APPLIED Journal of Applied Physics Pub Date : 2024-09-07 Epub Date: 2024-09-04 DOI:10.1063/5.0218262
Stephanie N Kramer, Jeanpun Antarasen, Cole R Reinholt, Lydia Kisley
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Abstract

We present a comprehensive guide to light-sheet microscopy (LSM) to assist scientists in navigating the practical implementation of this microscopy technique. Emphasizing the applicability of LSM to image both static microscale and nanoscale features, as well as diffusion dynamics, we present the fundamental concepts of microscopy, progressing through beam profile considerations, to image reconstruction. We outline key practical decisions in constructing a home-built system and provide insight into the alignment and calibration processes. We briefly discuss the conditions necessary for constructing a continuous 3D image and introduce our home-built code for data analysis. By providing this guide, we aim to alleviate the challenges associated with designing and constructing LSM systems and offer scientists new to LSM a valuable resource in navigating this complex field.

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用于纳米级成像的光片显微镜实用指南:超越细胞。
我们介绍了光片显微镜(LSM)的综合指南,以帮助科学家掌握这种显微镜技术的实际应用。我们强调了光片显微镜对静态微米级和纳米级特征以及扩散动力学成像的适用性,介绍了显微镜的基本概念、光束轮廓考虑因素以及图像重建。我们概述了构建自制系统的关键实际决策,并深入介绍了对准和校准过程。我们简要讨论了构建连续三维图像的必要条件,并介绍了用于数据分析的自制代码。通过提供这本指南,我们旨在减轻与设计和构建 LSM 系统相关的挑战,并为初涉 LSM 的科学家提供导航这一复杂领域的宝贵资源。
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来源期刊
Journal of Applied Physics
Journal of Applied Physics 物理-物理:应用
CiteScore
5.40
自引率
9.40%
发文量
1534
审稿时长
2.3 months
期刊介绍: The Journal of Applied Physics (JAP) is an influential international journal publishing significant new experimental and theoretical results of applied physics research. Topics covered in JAP are diverse and reflect the most current applied physics research, including: Dielectrics, ferroelectrics, and multiferroics- Electrical discharges, plasmas, and plasma-surface interactions- Emerging, interdisciplinary, and other fields of applied physics- Magnetism, spintronics, and superconductivity- Organic-Inorganic systems, including organic electronics- Photonics, plasmonics, photovoltaics, lasers, optical materials, and phenomena- Physics of devices and sensors- Physics of materials, including electrical, thermal, mechanical and other properties- Physics of matter under extreme conditions- Physics of nanoscale and low-dimensional systems, including atomic and quantum phenomena- Physics of semiconductors- Soft matter, fluids, and biophysics- Thin films, interfaces, and surfaces
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