EventsHolography Meets Advanced Manufacturing
Published
This submission belongs to the session H2. Holography 2 of the event Holography Meets Advanced Manufacturing
Published date
13 Mar, 2023
Academic Editor
author-avatarVIJAYAKUMAR ANAND
Citation
Mariana Potcoava, Christopher Mann, Jonathan Art, Simon Alford, Light Sheet Fluorescence Microscopy using Incoherent Light Detection, in Proceedings of Holography Meets Advanced Manufacturing, 20 February–22 February 2023, MDPI: Basel, Switzerland, doi: 10.3390/HMAM2-14156
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Light Sheet Fluorescence Microscopy using Incoherent Light Detection

image
Simon Alford 3
1. University of Illinois at Chicago, USA
2. Northern Arizona University
3. University of Illinois at Chicago
Abstract

We previously developed an incoherent holography technique for use in lattice light sheet (LLS) microscopes, that represents a specialized adaptation of light sheet microscopy. Light sheet instruments resolve 3D information by illuminating the sample at 90o to the imaging plane with a sheet of laser light that excites fluorophores in the sample only in a narrow plane. Imaging this plane and then moving it in the imaging z-axis allows construction of the sample volume. Among these types of instruments, LLS microscopy gives higher z-axis resolution and tissue depth penetration. It has a similar working principle to light sheet fluorescence microscopy, but uses a lattice configuration of Bessel beams, instead of Gaussian beams. Our incoherent light detection technique replaces the glass tube lens of the original LLS with a dual diffractive lens system to retrieve the axial depth of the sample. Here, we show that the system is applicable to the light sheet instruments. To make a direct comparison in the same emission light path, we can imitate the nature of non-Bessel light sheet systems by altering the mask annuli used to create Bessel beams in the LLS system. We change the diffractive mask annuli from a higher NA anulus to a smaller NA anulus. This generates a Gaussian excitation beam similar to conventional light sheet systems. Using this approach, we propose an incoherent light detection system for 3D imaging by choosing a variable NA and moving only the light sheet while keeping the sample stage and detection microscope objective stationary.

Keywords
Incoherent Holography
Light Sheet
Lattice Light Sheet
Fluorescence Microscopy
Diffractive Lenses
Manuscript
Oral Presentation
Poster
Potcoava_Estonia_2023_sent.pdf
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