This paper presents the use of a deformable mirror (DM) configured to rapidly refocus a microscope employing a high numerical aperture objective lens. An Alpao DM97-15 membrane DM was used to refocus a 40×/0.80 NA water-immersion objective through a defocus range of -50 to 50 m at 26.3 sweeps per second. We achieved imaging with a mean Strehl metric of > 0.6 over a field of view in the sample of 200×200 m2 over a defocus range of 77 m. We describe an optimisation procedure where the mirror is swept continuously in order to avoid known problems of hysteresis associated with the membrane DM employed. This work demonstrates that a DM-based refocusing system could in the future be used in light-sheet fluorescence microscopes to achieve video-ra...
We have developed a nonlinear adaptive optics microscope utilizing a deformable membrane mirror (DMM...
Funding Information: Deutsche Forschungsgemeinschaft (SFB 688); NIH (Prime Grant No. 5 R01 DA038882-...
We have developed a nonlinear adaptive optics microscope utilizing a deformable membrane mirror (DMM...
Light-sheet fluorescence microscopy (LSFM) achieves optically sectioned imaging with the relatively ...
There are numerous situations in microscopy where it is desirable to remotely refocus a microscope e...
Removal of complex aberrations at millisecond time scales over millimeters in distance in multiphoto...
We demonstrate a remote-refocus microscopy system with volume acquisition rates of up to 150 Hz usin...
We demonstrate a remote-refocus microscopy system with volume acquisition rates of up to 150 Hz usin...
We demonstrate a remote-refocus microscopy system with volume acquisition rates of up to 150 Hz usin...
Two adaptive optic systems for correction of either temporal phase error and wavefront errors for ul...
Two adaptive optic systems for correction of either temporal phase error and wavefront errors for ul...
Current developments in optical microscopy aim to visualise complex dynamic biomolecular processes ...
The performance of optical systems is often affected by aberrations that degrade the image resolutio...
Nonlinear microscopy is capable of imaging biological tissue non-invasively with sub-cellular resolu...
Nonlinear microscopy is capable of imaging biological tissue non-invasively with sub-cellular resolu...
We have developed a nonlinear adaptive optics microscope utilizing a deformable membrane mirror (DMM...
Funding Information: Deutsche Forschungsgemeinschaft (SFB 688); NIH (Prime Grant No. 5 R01 DA038882-...
We have developed a nonlinear adaptive optics microscope utilizing a deformable membrane mirror (DMM...
Light-sheet fluorescence microscopy (LSFM) achieves optically sectioned imaging with the relatively ...
There are numerous situations in microscopy where it is desirable to remotely refocus a microscope e...
Removal of complex aberrations at millisecond time scales over millimeters in distance in multiphoto...
We demonstrate a remote-refocus microscopy system with volume acquisition rates of up to 150 Hz usin...
We demonstrate a remote-refocus microscopy system with volume acquisition rates of up to 150 Hz usin...
We demonstrate a remote-refocus microscopy system with volume acquisition rates of up to 150 Hz usin...
Two adaptive optic systems for correction of either temporal phase error and wavefront errors for ul...
Two adaptive optic systems for correction of either temporal phase error and wavefront errors for ul...
Current developments in optical microscopy aim to visualise complex dynamic biomolecular processes ...
The performance of optical systems is often affected by aberrations that degrade the image resolutio...
Nonlinear microscopy is capable of imaging biological tissue non-invasively with sub-cellular resolu...
Nonlinear microscopy is capable of imaging biological tissue non-invasively with sub-cellular resolu...
We have developed a nonlinear adaptive optics microscope utilizing a deformable membrane mirror (DMM...
Funding Information: Deutsche Forschungsgemeinschaft (SFB 688); NIH (Prime Grant No. 5 R01 DA038882-...
We have developed a nonlinear adaptive optics microscope utilizing a deformable membrane mirror (DMM...