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Let us consider the system we described in Section 4. The theoretical idea behind such system is to adapt the information rate of each information source to channel.
The system we described in the "Network model" section uses a GI size larger than double the maximum delay of the individual channels, in order to comply with the constraints described above.
By making use of the Gal4/UAS-based bidirectional expression system we described previously [43], parkin was ubiquitously and stably expressed in transgenic zebrafish as early as 6 hours post fertilization up to adulthood.
Towards a better understanding of goose type III interferon system, we described goIFNLR1 cDNA from the Sichuan White Goose for the first time in this study.
In order to set up the logical model of the curli regulation system, we described the involved components in terms of logical variables whose values were interpreted as functional states of the components, e.g. active vs. inactive states.
Based on SEM image investigation and additional particle tracking analysis experiments in NanoSight system, we described possibilities to control the product morphology and the average particle size by varying lecithin concentration in the reaction system only.
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As an example of how to design multiscale visualizations using our system, we describe four design patterns using our formalism.
The system we describe uses a highly automated robotic facility that can scan behavior models of whole objects.
Our techniques focus on preserving the ''bits" of digital collections; other services that focus on other archiving concerns (such as preserving meaningful metadata) can be built on top of the system we describe here.
We thereby suggest that the navigation system we describe is reliable for obtaining accurate measurements of soft tissue balancing with the patella reduced.
To demonstrate the system, we describe an experiment for characterizing rapid evoked scattered light changes in neural tissue, in vivo, using simultaneous electronic image acquisition and electrophysiological recording.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com