Brillouin microscopy | Nature Reviews Methods Primers
Thank you for visiting nature.com. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser (or turn off compatibility mode in Internet Explorer). In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript. Advertisement Nature Reviews Methods Primers volume 4, Article number: 8 (2024) Cite this article 4377 Accesses 38 Citations 31 Altmetric Metrics details The field of Brillouin microscopy and imaging was established approximately 20 years ago, thanks to the development of non-scanning high-resolution optical spectrometers. Since then, the field has experienced rapid expansion, incorporating technologies from telecommunications, astrophotonics, multiplexed microscopy, quantum optics and machine learning. Consequently, these advancements have led to much-needed improvements in imaging speed, spectral resolution and sensiti
Subjects Imaging Microscopy Optical techniques Abstract The field of Brillouin microscopy and imaging was established approximately 20 years ago, thanks to the development of non-scanning high-resolution optical spectrometers. Since then, the field has experienced rapid expansion, incorporating technologies from telecommunications, astrophotonics, multiplexed microscopy, quantum optics and machine learning. Consequently, these advancements have led to much-needed improvements in imaging speed, spectral resolution and sensitivity. The progress in Brillouin microscopy is driven by a strong deman
Explore this link on the map →related reading
- Gap Mapgap-map.org
- Brillouin scattering - Wikipediaen.wikipedia.org
- Expansion microscopy: principles and uses in biological research | Nature Methodsnature.com
- Roadmap on wavefront shaping and deep imaging in complex media - IOPscienceiopscience.iop.org
- Imagining the future of optical microscopy: everything, everywhere, all at once | Communications Biologynature.com
- Adaptive optical microscopy: the ongoing quest for a perfect image | Light: Science & Applicationsnature.com
- Optical coherence tomography - Wikipediaen.wikipedia.org
- Max Hodak - A Science corporationmaxhodak.com
- A Cell Observatory to reveal the subcellular foundations of life | Nature Methodsnature.com
- More than double the fun with two-photon excitation microscopy | Communications Biologynature.com
- Spontaneous and indefinite blinking in upconverting nanoparticles for ångström-precision multicolour super-resolution imaging | Nature Nanotechnologynature.com
- Fluorescence lifetime imaging microscopy: fundamentals and advances in instrumentation, analysis, and applicationsspiedigitallibrary.org