Endo-Microscopy Beyond The Abbe And Nyquist Limits at Xavier Head blog

Endo-Microscopy Beyond The Abbe And Nyquist Limits. The researchers have achieved fluorescence microscopy more than three times better than the abbe limit and 20 times faster. Here we propose and experimentally demonstrate fluorescence imaging through a thin mm fiber probe with a spatial resolution beyond the abbe. Here, we propose and experimentally demonstrate fluorescence imaging through a thin mm fibre probe with a spatial resolution beyond the abbe. We have demonstrated that the compressive sensing approach in combination with an mm fibre probe can provide imaging. We demonstrate a spatial resolution more than 2 times better than the diffraction limit and an imaging speed 20 times faster than the. We demonstrate a spatial resolution more than 2 times better than the diffraction limit and an imaging speed 20 times faster than the.

Theoretical comparison of conventional imaging and superresolution
from www.researchgate.net

We have demonstrated that the compressive sensing approach in combination with an mm fibre probe can provide imaging. Here we propose and experimentally demonstrate fluorescence imaging through a thin mm fiber probe with a spatial resolution beyond the abbe. We demonstrate a spatial resolution more than 2 times better than the diffraction limit and an imaging speed 20 times faster than the. The researchers have achieved fluorescence microscopy more than three times better than the abbe limit and 20 times faster. Here, we propose and experimentally demonstrate fluorescence imaging through a thin mm fibre probe with a spatial resolution beyond the abbe. We demonstrate a spatial resolution more than 2 times better than the diffraction limit and an imaging speed 20 times faster than the.

Theoretical comparison of conventional imaging and superresolution

Endo-Microscopy Beyond The Abbe And Nyquist Limits We demonstrate a spatial resolution more than 2 times better than the diffraction limit and an imaging speed 20 times faster than the. The researchers have achieved fluorescence microscopy more than three times better than the abbe limit and 20 times faster. Here, we propose and experimentally demonstrate fluorescence imaging through a thin mm fibre probe with a spatial resolution beyond the abbe. We demonstrate a spatial resolution more than 2 times better than the diffraction limit and an imaging speed 20 times faster than the. We demonstrate a spatial resolution more than 2 times better than the diffraction limit and an imaging speed 20 times faster than the. We have demonstrated that the compressive sensing approach in combination with an mm fibre probe can provide imaging. Here we propose and experimentally demonstrate fluorescence imaging through a thin mm fiber probe with a spatial resolution beyond the abbe.

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