Summary of ssbd-repos-000530

SSBD:database
URL

Name
ssbd-repos-000530 (530-Isobe-SpheroidCellPhotoconversion)
URL
DOI
-

Title
x-y cross-sectional images of EpH4-spheroids expressing nucleus-localized PSmOrange2 before and after photostimulation of target cells
Description

Significance
Three-dimensional (3D) two-photon patterned illumination using a combination of computer-generated holography (CGH) and wide-field temporal focusing (TF) has emerged as a highly effective approach for photostimulation. However, even though the axial full-width at half-maximum of a single-spot by TF is smaller than the single-cell size of 10 μm, the axial resolution of 3D multispot patterns produced by CGH with TF is lower than the single-cell resolution as a result of interference among multispots.
Aim
We aim to achieve 3D two-photon patterned illumination with single-cell resolution by combining CGH with time-multiplexed multiline temporal focusing (TM-ML-TF), which is implemented by adding an echelle grating at a position conjugate to the focal plane of the TF-CGH system.
Approach
We measure the 3D two-photon fluorescence distributions generated by the TF-CGH and TM-ML-TF-CGH systems.
Results
In TM-ML-TF, the crosstalk artifacts between the target spots in two proximal planes with an axial distance of 20 μm were suppressed from 81% to 15% compared with those in TF. We successfully achieved the photoconversion of 3D target cells in spheroids with single-cell resolution.
Conclusions
TM-ML-TF successfully suppresses the interference among multispots, enabling the TM-ML-TF-CGH system to provide precise 3D patterned illumination with single-cell resolution.

Submited Date
-
Release Date
2026-10-01
Updated Date
-
License
Funding information
-
File formats
Data size
80.0 MB

Organism
Mus musculus
Strain
-
Cell Line
EpH4
Genes
NA
Proteins
NA

GO Molecular Function (MF)
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GO Biological Process (BP)
cell growth
GO Cellular Component (CC)
nucleus
Study Type
NA
Imaging Methods
two-photon laser scanning microscopy

Method Summary
-
Related paper(s)

Contact(s)
Keisuke Isobe
Organization(s)
RIKEN RAP
Image Data Contributors
Quantitative Data Contributors

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