In situ pulse dispersion estimation via third-harmonic generation interferometric autocorrelation for multiphoton microscopy
Shaughnessy, L.; Vannell, L.; Fernando-Peiris, S.; Rodriguez, C.
Show abstract
Three-photon microscopy enables deep-tissue imaging but is highly sensitive to excitation pulse quality, since three-photon excitation efficiency scales with the cube of instantaneous intensity. Group-delay dispersion (GDD) and third-order dispersion (TOD) accumulated through the laser and microscope optics can substantially reduce peak intensity at the focal plane, yet these quantities are rarely measured where imaging occurs. Here, we use third-harmonic generation (THG) interferometric autocorrelation, together with Dispersion Look-Up-Table Estimation (D-LUTE) and a joint two-measurement fitting procedure validated on synthetic data, to estimate baseline GDD and TOD directly at the objective focal plane, requiring only a compact autocorrelator module added to the microscope beam path. Applying this method at 1300 nm and 1600 nm excitation across two microscope systems equipped with different units of the same laser model, we find pulse durations 1.4- to 1.7-fold longer than the transform limit at every condition, driven predominantly by TOD, which varied by roughly 2.7-fold between the two systems. Using the endogenous THG signal from myelinated fibers, we further demonstrate in vivo pulse characterization in the mouse brain, finding no measurable broadening between the tissue surface and a depth of nearly a millimeter. This low-cost, easily implemented approach enables routine, in situ pulse monitoring across multiphoton microscopy platforms.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Astigmatism-based focus stabilisation with universal objective lens compatibility, extended operating range and nanometre precision 95%
- A systematic and quantitative comparison of lattice and Gaussian light-sheets 95%
- Combining Multi-site FRAP and HILO-TIRF microscopy using a Spatial Light Modulator 94%
Similar papers in this journal
- Ultra-thin fluorocarbon foils optimize multiscale imaging of three-dimensional native and optically cleared specimens 95%
- Deep-Tissue Two-Photon Brain Imaging Enabled by a Tunable Fiber-Optic Dispersive Wave Generator 94%
- EVALUATION OF STED SUPER-RESOLUTION IMAGE QUALITY BY IMAGE CORRELATION SPECTROSCOPY (QuICS) 94%
Similar papers in this journal
- Synthesis of arbitrary interference patterns using a single galvanometric mirror, and its application to Structured Illumination Microscopy 95%
- STORM imaging buffer with refractive index matched to standard immersion oil 92%
- Single Photon, Time-Gated, Phasor-based Fluorescence Lifetime Imaging Through Highly Scattering Medium 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.