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In this paper the temperature gradients during fast and slow cooling for conventional and anatomical designs are compared as well as an optical procedure to directly compare the influence of cooling rate on residual stress.
We have developed a new optical procedure to determine the optimum power of intraocular lenses (IOLs) for cataract surgery.
We present an optical procedure to estimate the optimum IOL power for a specific lens and individual eye.
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Moreover, the analytical characteristics of several optical procedures were compared with the results presented here.
An optical modeling procedure is developed to predict and model the colour of electro-coloured anodized aluminium that has been modified in pore structure for the generation of interference colours.
As a first step of development, we designed and tested an optical pyrometry procedure to measure the surface temperature of nuclear fuel claddings without any contact, under air, in the temperature range 700 850 °C.
The optical modeling procedure is highly sensitive to changes on the nano-scale (porosity, percentage of metal deposition, presence of barrier regrowth…), and has high potential as a predictive tool to relate the microstructure of a surface to the final colour characteristics of the metal, and as such to the used electrolytic processing conditions.
Recent improvements have been made to the optical alignment procedure for setting up the station before imaging: a small laser device can now be set up to send a beam down the X-ray path through the four crystals, and a small photodiode, which has much better signal-to-noise characteristics than the ion chamber normally used for alignment, has been trailed successfully.
The cut ends of the scintillator were coupled with PMTs using a standard optical coupling procedure.
The high exclusion percentage for technical problems (50%) is as a limitation of the current optical imaging procedure investigated herein.
iWAT was processed through the whole-mount immunolabeling of intended epitopes, and then subjected to the optical clearing procedure for imaging on the lightsheet microscope.
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