PuSH - Publikationsserver des Helmholtz Zentrums München

Rowlands, C.J.* ; Bruns, O.T. ; Franke, D.* ; Fukamura, D.* ; Jain, R.K.* ; Bawendi, M.G.* ; So, P.T.C.*

Increasing the penetration depth of temporal focusing multiphoton microscopy for neurobiological applications.

J. Phys. D. Appl. Phys. 52:264001 (2019)
Verlagsversion DOI
Open Access Gold (Paid Option)
Creative Commons Lizenzvertrag
The first ever demonstration of temporal focusing with short wave infrared (SWIR) excitation and emission is demonstrated, achieving a penetration depth of 500 μm in brain tissue. This is substantially deeper than the highest previously-reported values for temporal focusing imaging in brain tissue, and demonstrates the value of these optimized wavelengths for neurobiological applications.
Altmetric
Weitere Metriken?
Zusatzinfos bearbeiten [➜Einloggen]
Publikationstyp Artikel: Journalartikel
Dokumenttyp Wissenschaftlicher Artikel
Korrespondenzautor
Schlagwörter Fluorescence Microscopy ; Multiphoton Microscopy ; Neurophotonics ; Quantum Dots ; Temporal Focusing; Quantum Dots
ISSN (print) / ISBN 0022-3727
e-ISSN 1361-6463
Quellenangaben Band: 52, Heft: 26, Seiten: , Artikelnummer: 264001 Supplement: ,
Verlag Institute of Physics Publishing (IOP)
Verlagsort Bristol
Nichtpatentliteratur Publikationen
Begutachtungsstatus Peer reviewed
Institut(e) Helmholtz Pioneer Campus (HPC)