Exact(2)
Optical coherence tomography (OCT) has attracted much attention as a noninvasive optical modality in the realm of biomedical imaging because of its micrometer resolution and appreciable imaging depth, high speed, and high sensitivity [ 4– 8].
Optical coherence tomography (OCT) [ 1, 2] is a relatively novel imaging modality that allows for non-invasive, cross-sectional imaging of the turbid biological tissues with micrometer resolution and with an imaging depth of up to 2 mm below the surface.
Similar(58)
The worlds fastest commercially available 3D printer with sub-micrometer resolution and are used to fabricate microstructures for numerous application areas such as photonics, cell biology, micromechanics, microoptics and microfluidics.
This beam line, which is under its final stage of development, should allow focusing of protons and alpha particles down to a sub-micrometer resolution, and is therefore referred to as a "nanobeam line" in the following paper.
(1) We take advantage of the OPS technology to obtain images with good contrast and micrometer resolution.
Employing an IR laser and automated x y stages with micrometer resolution we characterised the sensors regarding the CCE in dependence of the bias voltage and the IR laser position relative to the sensors before irradiation.
Having a tool that enables volumetric imaging with micrometer resolution, 3D visualization of the retinal vasculature and the ability to quantify blood flow promises to open new perspectives on understanding pathophysiology, as well as diagnosis and monitoring therapeutic response.
Variations in micrometer resolution, in methods of image acquisition, in software analysis, and in the presentation of statistical results make direct comparisons between these studies difficult.
The novel technique to expose depth gradients in real space, with micrometer resolution, opens the way to understand the development of microstructure and stress upon (thermochemical) surface treatment.
We use two-photon laser scanning microscopy (2PLSM) to concurrently measure dural and pial surface vessel diameters down to micrometer resolution.
Micrometer resolution OCT was used to image individual corneal layers of moderate and severe keratoconus patients as shown in Fig. 7(b) and (c).
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