In this contribution we propose the use of a liquid lens (LL) to perform three-dimensional (3D) imaging. Our proposed method consists on inserting the LL at the aperture stop of telecentric microscopes. The sequential depth images of 3D samples are obtained by tuning the focal length of LL. Our experimental results demonstrate that fast-axial scanning of microscopic images is obtained without varying neither the resolution capability nor the magnification of the imaging system. Furthermore, this non-mechanical approach can be easily implemented in any commercial optical microscope
In this paper, we introduce a novel concept of liquid-actuated aspheric lens (LAL) with a built-in a...
<div><p>In this paper, we introduce a novel concept of liquid-actuated aspheric lens (LAL) with a bu...
To the best of our knowledge, for the first time, biological Three Dimensional (3-D) imaging has bee...
We establish the conditions for obtaining fast axial 3D microscopy with constant magnification, inva...
Three-dimensional (3-D) imaging is demonstrated using an electronically controlled liquid crystal (L...
The performance of the 3D confocal imaging of a blood vessel sample using axial scans implemented th...
The paper first highlights the use of multiple electronically controlled optical lenses, specificall...
We report on the compact optical design of a high-resolution 3D scanning microscope with adaptive op...
We report on the compact optical design of a high-resolution 3D scanning microscope with adaptive op...
Integral microscopy is a 3D imaging technique that permits the recording of spatial and angular info...
Optical axial scanning is essential process to obtain 3D information of biological specimens. To rea...
For the first time, to the best of authors\u27 knowledge, a no-moving-parts axial scanning confocal ...
For the first time, to the best of authors\u27 knowledge, a no-moving-parts axial scanning confocal ...
This paper presents a new non-contact method for measuring 3-D features of biological materials. The...
Funder: MedImmune, and Infinitus (China) Ltd.In optical microscopy, the slow axial scanning rate of ...
In this paper, we introduce a novel concept of liquid-actuated aspheric lens (LAL) with a built-in a...
<div><p>In this paper, we introduce a novel concept of liquid-actuated aspheric lens (LAL) with a bu...
To the best of our knowledge, for the first time, biological Three Dimensional (3-D) imaging has bee...
We establish the conditions for obtaining fast axial 3D microscopy with constant magnification, inva...
Three-dimensional (3-D) imaging is demonstrated using an electronically controlled liquid crystal (L...
The performance of the 3D confocal imaging of a blood vessel sample using axial scans implemented th...
The paper first highlights the use of multiple electronically controlled optical lenses, specificall...
We report on the compact optical design of a high-resolution 3D scanning microscope with adaptive op...
We report on the compact optical design of a high-resolution 3D scanning microscope with adaptive op...
Integral microscopy is a 3D imaging technique that permits the recording of spatial and angular info...
Optical axial scanning is essential process to obtain 3D information of biological specimens. To rea...
For the first time, to the best of authors\u27 knowledge, a no-moving-parts axial scanning confocal ...
For the first time, to the best of authors\u27 knowledge, a no-moving-parts axial scanning confocal ...
This paper presents a new non-contact method for measuring 3-D features of biological materials. The...
Funder: MedImmune, and Infinitus (China) Ltd.In optical microscopy, the slow axial scanning rate of ...
In this paper, we introduce a novel concept of liquid-actuated aspheric lens (LAL) with a built-in a...
<div><p>In this paper, we introduce a novel concept of liquid-actuated aspheric lens (LAL) with a bu...
To the best of our knowledge, for the first time, biological Three Dimensional (3-D) imaging has bee...