bioRxiv · 10.1101/2025.02.13.635171
A versatile miniature two-photon microscope enabling multicolor deep-brain imaging
Abstract
Here we present the FHIRM-TPM 3.0, a 2.6 g miniature two-photon microscope capable of multicolor deep-brain imaging in freely behaving mice. The system was integrated with a broadband anti-resonant hollow-core fiber featuring low transmission loss, minimal dispersion from 700-1060 nm, and high tolerance of laser power. By correcting chromatic and spherical aberrations and optimizing the fluorescence collection aperture, we achieved cortical neuronal imaging at depths exceeding 820 m and, using a GRIN lens, hippocampal Ca2+ imaging at single dendritic spine resolution. Moreover, we engineered three interchangeable parfocal objectives, allowing for a tenfold scalable field-of-view up to 1x0.8 mm{superscript 2}, with lateral resolutions ranging from 0.68 to 1.46 m. By multicolor imaging at excitation wavelengths of 780 nm, 920 nm and 1030 nm, we investigated mitochondrial and cytosolic Ca2+ activities relative to the deposition of amyloid plaques in the cortex of awake APP/PS1 transgenic mice. Thus, the FHIRM-TPM 3.0 provides a versatile imaging system suitable for diverse brain imaging scenarios.
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Wu, R., Zhao, C., Qiu, S., Zhu, Y., Zhang, L., Fu, Q., Hu, Y., Wu, D., Yu, F., Zhou, F., Huang, H., Zhang, Y., Wang, X., Wang, A., Cheng, H.. 2025-02-14. A versatile miniature two-photon microscope enabling multicolor deep-brain imaging. https://doi.org/10.1101/2025.02.13.635171
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