Guidestar-assisted wavefront-shaping methods for focusing light into biological tissue | Nature Photonics
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 Photonics volume 9, pages 563–571 (2015)Cite this article 15k Accesses 434 Citations 20 Altmetric Metrics details In the field of biomedical optics, optical scattering has traditionally limited the range of imaging within tissue to a depth of one millimetre. A recently developed class of wavefront-shaping techniques now aims to overcome this limit and achieve diffraction-limited control of light beyond one centimetre. By manipulating the spatial profile of an optical field before it enters a scattering medium, it is possible to create a micrometre-scale focal spot deep within tissue. To successfully
Subjects Biophotonics Imaging Optical techniques Abstract In the field of biomedical optics, optical scattering has traditionally limited the range of imaging within tissue to a depth of one millimetre. A recently developed class of wavefront-shaping techniques now aims to overcome this limit and achieve diffraction-limited control of light beyond one centimetre. By manipulating the spatial profile of an optical field before it enters a scattering medium, it is possible to create a micrometre-scale focal spot deep within tissue. To successfully operate in vivo , these wavefront-shaping techniq
Explore this link on the map →related reading
- Guidestar-assisted wavefront-shaping methods for focusing light into biological tissue - PMCncbi.nlm.nih.gov
- Roadmap on wavefront shaping and deep imaging in complex media - IOPscienceiopscience.iop.org
- OPGopg.optica.org
- Adaptive optics - Wikipediaen.wikipedia.org
- A differentiable wave optics model for end-to-end imaging system optimization | SPIE Photonics Westspie.org
- Adaptive optical microscopy: the ongoing quest for a perfect image | Light: Science & Applicationsnature.com
- Designing a large field-of-view two-photon microscope using optical invariant analysis - PMCncbi.nlm.nih.gov
- Light sheet microscopy – Huisken Labhuiskenlab.com
- Reproducing DeepTFUS | projectsmasonjwang.com
- Two-Photon Excitation Microscopy for the Study of Living Cells and Tissues - PMCpmc.ncbi.nlm.nih.gov
- Imaging in complex media | Nature Physicsnature.com
- Two-photon excitation microscopy - Wikipediaen.wikipedia.org