Journal Article10.1039/C3AN00354J
A compact microscope setup for multimodal nonlinear imaging in clinics and its application to disease diagnostics
Tobias Meyer,Martin Baumgartl,Thomas Gottschall,Torbjörn Pascher,Andreas Wuttig,Christian Matthäus,Bernd F. M. Romeike,Bernhard R. Brehm,Jens Limpert,Andreas Tünnermann,Andreas Tünnermann,Orlando Guntinas-Lichius,Benjamin Dietzek,Michael Schmitt,Jürgen Popp +14 more
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TL;DR: Implementing a novel compact fiber laser system into a tailored designed laser scanning microscope results in a small footprint easy to use multimodal imaging platform enabling simultaneously highly efficient generation and acquisition of second harmonic generation, two-photon excited fluorescence, and coherent anti-Stokes Raman scattering signals for lipid imaging for label-free investigation of tissue samples.
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Abstract: The past years have seen increasing interest in nonlinear optical microscopic imaging approaches for the investigation of diseases due to the method's unique capabilities of deep tissue penetration, 3D sectioning and molecular contrast. Its application in clinical routine diagnostics, however, is hampered by large and costly equipment requiring trained staff and regular maintenance, hence it has not yet matured to a reliable tool for application in clinics. In this contribution implementing a novel compact fiber laser system into a tailored designed laser scanning microscope results in a small footprint easy to use multimodal imaging platform enabling simultaneously highly efficient generation and acquisition of second harmonic generation (SHG), two-photon excited fluorescence (TPEF) as well as coherent anti-Stokes Raman scattering (CARS) signals with optimized CARS contrast for lipid imaging for label-free investigation of tissue samples. The instrument combining a laser source and a microscope features a unique combination of the highest NIR transmission and a fourfold enlarged field of view suited for investigating large tissue specimens. Despite its small size and turnkey operation rendering daily alignment dispensable the system provides the highest flexibility, an imaging speed of 1 megapixel per second and diffraction limited spatial resolution. This is illustrated by imaging samples of squamous cell carcinoma of the head and neck (HNSCC) and an animal model of atherosclerosis allowing for a complete characterization of the tissue composition and morphology, i.e. the tissue's morphochemistry. Highly valuable information for clinical diagnostics, e.g. monitoring the disease progression at the cellular level with molecular specificity, can be retrieved. Future combination with microscopic probes for in vivo imaging or even implementation in endoscopes will allow for in vivo grading of HNSCC and characterization of plaque deposits towards the detection of high risk plaques.
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Citations
Coherent Raman Scattering Microscopy in Biology and Medicine.
TL;DR: Recent achievements in CRS microscopy are reviewed, focusing on the theory of the CRS signal-to-noise ratio, imaging speed, technical developments, and applications of CRS imaging in bioscience and clinical settings.
The many facets of Raman spectroscopy for biomedical analysis.
TL;DR: A critical review is presented on the use of linear and nonlinear Raman microspectroscopy in biomedical diagnostics of bacteria, cells, and tissues and progress in coherent Raman scattering in tissue diagnosis.
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Endoscopic fiber probe for nonlinear spectroscopic imaging
Aleksandar Lukic,Sebastian Dochow,Hyeonsoo Bae,Gregor Matz,Ines Latka,Bernhard Messerschmidt,Michael Schmitt,Jürgen Popp +7 more
- 20 May 2017
TL;DR: In this article, a multimodal fiber probe is proposed to enable the simultaneous recording of nonlinear imaging modalities like coherent anti-Stokes Raman scattering (CARS), second harmonic generation (SHG), and two-photon excited auto-fluorescence (TPEF) for biomedical applications.
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Portable all-fiber dual-output widely tunable light source for coherent Raman imaging
Maximilian Brinkmann,Alexander Fast,Tim Hellwig,Isaac J. Pence,Conor L. Evans,Carsten Fallnich +5 more
TL;DR: A rapidly tunable dual-output all-fiber light source for coherent Raman imaging, based on a dispersively matched mode-locked laser pumping a parametric oscillator, showing a reliable operation despite mechanical shocks and being well suited for operation in a mobile cart is presented.
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References
Image processing with ImageJ
Michael D. Abràmoff,Paulo J. Magalhães,Sunanda J. Ram +2 more
- 01 Jan 2004
TL;DR: ImageJ is an open source Java-written program that is used for many imaging applications, including those that that span the gamut from skin analysis to neuroscience, and can read most of the widely used and significant formats used in biomedical images.
Deep tissue two-photon microscopy
Fritjof Helmchen,Winfried Denk +1 more
TL;DR: Fundamental concepts of nonlinear microscopy are reviewed and conditions relevant for achieving large imaging depths in intact tissue are discussed.
Live tissue intrinsic emission microscopy using multiphoton-excited native fluorescence and second harmonic generation
Warren R. Zipfel,Rebecca M. Williams,R. H. Christie,Alexander Yu. Nikitin,Bradley T. Hyman,Watt W. Webb +5 more
TL;DR: Applications involving a range of intrinsic molecules and molecular assemblies that enable direct visualization of tissue morphology, cell metabolism, and disease states such as Alzheimer's disease and cancer are compiled and demonstrated.
Three-dimensional high-resolution second-harmonic generation imaging of endogenous structural proteins in biological tissues.
Paul J. Campagnola,Andrew C. Millard,Mark Terasaki,Pamela E. Hoppe,Christian J. Malone,William A. Mohler +5 more
TL;DR: Second-harmonic imaging microscopy (SHIM) on a laser-scanning system proves, therefore, to be a powerful and unique tool for high-resolution, high-contrast, three-dimensional studies of live cell and tissue architecture.
1K
Prognosis of oral pre-malignant lesions: significance of clinical, histopathological, and molecular biological characteristics.
TL;DR: A substantial need to improve the histologic assessment of epithelial dysplasia or, since epithelial Dysplasia does not seem to be invariably associated with or even a necessary prerequisite for malignant development, it may be necessary to develop other methods for predicting the malignant potential of pre-malignant lesions.
596