» Articles » PMID: 38633065

Multicolor Two-photon Light-patterning Microscope Exploiting the Spatio-temporal Properties of a Fiber Bundle

Overview
Specialty Radiology
Date 2024 Apr 18
PMID 38633065
Authors
Affiliations
Soon will be listed here.
Abstract

The development of efficient genetically encoded indicators and actuators has opened up the possibility of reading and manipulating neuronal activity in living tissues with light. To achieve precise and reconfigurable targeting of large numbers of neurons with single-cell resolution within arbitrary volumes, different groups have recently developed all-optical strategies based on two-photon excitation and spatio-temporal shaping of ultrashort laser pulses. However, such techniques are often complex to set up and typically operate at a single wavelength only. To address these issues, we have developed a novel optical approach that uses a fiber bundle and a spatial light modulator to achieve simple and dual-color two-photon light patterning in three dimensions. By leveraging the core-to-core temporal delay and the wavelength-independent divergence characteristics of fiber bundles, we have demonstrated the capacity to generate high-resolution excitation spots in a 3D region with two distinct laser wavelengths simultaneously, offering a suitable and simple alternative for precise multicolor cell targeting.

Citing Articles

Introduction to the Optics and the Brain 2023 feature issue.

Bauer A, Gibson E, Wang H, Srinivasan V Biomed Opt Express. 2024; 15(4):2110-2113.

PMID: 38633102 PMC: 11019680. DOI: 10.1364/BOE.517678.

References
1.
Prevedel R, Verhoef A, Pernia-Andrade A, Weisenburger S, Huang B, Nobauer T . Fast volumetric calcium imaging across multiple cortical layers using sculpted light. Nat Methods. 2016; 13(12):1021-1028. PMC: 5531274. DOI: 10.1038/nmeth.4040. View

2.
Vierock J, Rodriguez-Rozada S, Dieter A, Pieper F, Sims R, Tenedini F . BiPOLES is an optogenetic tool developed for bidirectional dual-color control of neurons. Nat Commun. 2021; 12(1):4527. PMC: 8313717. DOI: 10.1038/s41467-021-24759-5. View

3.
Tal E, Oron D, Silberberg Y . Improved depth resolution in video-rate line-scanning multiphoton microscopy using temporal focusing. Opt Lett. 2005; 30(13):1686-8. DOI: 10.1364/ol.30.001686. View

4.
Gill J, Lerman G, Zhao H, Stetler B, Rinberg D, Shoham S . Precise Holographic Manipulation of Olfactory Circuits Reveals Coding Features Determining Perceptual Detection. Neuron. 2020; 108(2):382-393.e5. PMC: 8289117. DOI: 10.1016/j.neuron.2020.07.034. View

5.
Packer A, Russell L, Dalgleish H, Hausser M . Simultaneous all-optical manipulation and recording of neural circuit activity with cellular resolution in vivo. Nat Methods. 2014; 12(2):140-6. PMC: 4933203. DOI: 10.1038/nmeth.3217. View