Scattering and absorption limit the penetration of optical fields into tissue. We demonstrate a new approach for increased depth penetration in light-sheet microscopy: attenuation-compensation of the light field. This tailors an exponential intensity increase along the illuminating propagation-invariant field, enabling the redistribution of intensity strategically within a sample to maximize signal and minimize irradiation. A key attribute of this method is that only minimal knowledge of the specimen transmission properties is required. We numerically quantify the imaging capabilities of attenuation-compensated Airy and Bessel light sheets, showing that increased depth penetration is gained without compromising any other beam attributes. Th...
Light sheet fluorescence microscopy enables high-resolution imaging of thick biological samples. By ...
The authors thank the UK Engineering and Physical Sciences Research Council (grant EP/J01771/X) and ...
Imaging across length scales and in depth has been an important pursuit of widefield optical imaging...
Scattering and absorption limit the penetration of optical fields into tissue. We demonstrate a new ...
Attenuation of optical fields owing to scattering and absorption limits the penetration depth for im...
We have investigated the effect of Airy illumination on the image quality and depth penetration of d...
The project was supported by the UK Engineering and Physical Sciences Research Council, RS Macdonald...
This work was supported by awards to KD from the UK Engineering and Physical Sciences Research Counc...
Funding: UK Engineering and Physical Sciences Research Council under grant EP/J01771X/1 (KD), the 'B...
Light-sheet imaging is rapidly gaining importance for imaging intact biological specimens. Many of t...
Light-sheet microscopy (LSM) has received great interest for fluorescent imaging applications in bio...
This project was supported by the UK Engineering and Physical Sciences Research Council.Light sheet ...
Light sheet microscopy facilitates rapid, high contrast, volumetric imaging with minimal sample expo...
Light sheet fluorescence microscopy enables high-resolution imaging of thick biological samples. By ...
The authors thank the UK Engineering and Physical Sciences Research Council (grant EP/J01771/X) and ...
Imaging across length scales and in depth has been an important pursuit of widefield optical imaging...
Scattering and absorption limit the penetration of optical fields into tissue. We demonstrate a new ...
Attenuation of optical fields owing to scattering and absorption limits the penetration depth for im...
We have investigated the effect of Airy illumination on the image quality and depth penetration of d...
The project was supported by the UK Engineering and Physical Sciences Research Council, RS Macdonald...
This work was supported by awards to KD from the UK Engineering and Physical Sciences Research Counc...
Funding: UK Engineering and Physical Sciences Research Council under grant EP/J01771X/1 (KD), the 'B...
Light-sheet imaging is rapidly gaining importance for imaging intact biological specimens. Many of t...
Light-sheet microscopy (LSM) has received great interest for fluorescent imaging applications in bio...
This project was supported by the UK Engineering and Physical Sciences Research Council.Light sheet ...
Light sheet microscopy facilitates rapid, high contrast, volumetric imaging with minimal sample expo...
Light sheet fluorescence microscopy enables high-resolution imaging of thick biological samples. By ...
The authors thank the UK Engineering and Physical Sciences Research Council (grant EP/J01771/X) and ...
Imaging across length scales and in depth has been an important pursuit of widefield optical imaging...