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Using causal estimation in this way yields inherent path regularization and accurate fiber resolution at crossing angles which is not found in independent optimization approaches.
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Recently, DKI-based tractography has been developed, showing improved crossing-fiber resolution in comparison to deterministic DTI-based tractography in healthy subjects.
Variants were classified as "definitely pathogenic" with a score of ≥11 points including evidence from one or more of the "gold-standard" investigations: segregation of the variant with a biochemical deficiency in single-fibers, high-resolution Northern blotting analysis of mt-tRNA steady-state levels, or transmitochondrial cybrid studies.
The cryo-EM structure of 30-nm fiber at high resolution provides a new paradigm for further investigation into the epigenetic regulation of chromatin structures.
As a result, PAN lattice images could be easily observed in the composite fiber by high resolution transmission electron microscopy.
With the GRIN lens on the exit end of the single-mode emitting fiber, the lateral resolution was greatly improved compared with former multimode fiber-optic displacement sensors.
The paper explores the possibility of the use of high spatial resolution fiber optic distributed sensing technology for on-specimen strain measurements in laboratory element testing.
This capability is due to employment of high resolution fiber optic sensor (FOS) with the strain sensitivity of 27.8 pmµɛ−1 that detects the decalcification through measurement of strain induced by loading.
Although major advances in optical fiber based high resolution in vivo imaging systems have been achieved in the field of early cancer detection, to our knowledge, fiber optic microendoscopy has not yet been applied to in vivo imaging and detection of bacteria.
Our research is aimed at developing a low resolution, fiber optic, handheld device that can give rapid and reliable assessment of collagen presence/absence outlining the MM lesion, in the first instance, and then a high resolution lens-based system for differentiating between, MM, SCC, BCC and BN based on collagen architecture and density.
Cellvizio® LAB is a high-speed fluorescence microscope that permits real-time endoscopic fluorescence imaging through high-resolution fiber bundle micro-optics (UltraMini0 microprobe: tip diameter 2.6mm, lateral resolution 1.4μm, field of view 240μm, working distance 60μm).
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