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We found that a good description of the evolution of infiltration during an experiment was achieved for most experiments independent of the number of parameters that was allowed to vary.
To evaluate the designed system, an experiment was achieved in a corridor of our lab.
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Global normalization of all arrays within a specific analysis experiment was achieved through the use of the variance stabilization normalization method described by Huber et al. The post-normalized data is reported as generalized log2 (glog2).
A reasonable convergence between the model and experiment was achieved after careful optimisation of initial material parameters as such coefficient of optical absorption and emissivity.
Good agreement with experiment was achieved.
The mode numbers and forms of vibrations have been identified by finite element modelling and photographic techniques; very good agreement between modelling and experiment was achieved.
As a result, at 1.38 m/s of the walking speed, the COT of 1.76 which is the lowest COT through the experiment was achieved.
Interestingly, the behavioural effect in this experiment was achieved without significant transfection of mRGCs identified using β-galactosidase staining.
Continuous exchange of the bulk solution (dilution or "rinse" experiment) was achieved by means of two Teflon tubes, which were inserted into the cuvette and connected to a multichannel peristaltic pump set at a flow rate of 5 mL/min.
Regardless of the specific conditions tested, maximum cell killing in all experiments was achieved at the lowest tested PRF.
Again, a rather good agreement of model and experiment is achieved.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com