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This work will be valuable for enabling in vitro model systems for the study of spinal motor control and related pathologies such as spinal cord injury, muscular dystrophy and spasticity by improving our understanding of the integration of the mechanosensitive feedback mechanism.
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These results are valuable for enabling detailed evolutionary analysis of PET-degrading enzymes and for rational design endeavors aiming at increasing the efficiency of PETase and similar enzymes toward plastic degradation.
Although this IR data set is far from complete, even for human TF complexes, we believe that the systematic collection of IR data from ISTs obtained by IVV, Y2H, and other methods will be valuable for refining protein interactions, enabling us to understand cellular events in greater detail.
Furthermore, positron emission tomography studies will be valuable for elucidating Flv activity because they enable quantitative measurement of Sig-1R in the brains of living patients and monitoring of the therapeutic dose required to induce the expression of Sig-1R and other effector proteins.
The innovative knowledge generated in these virtual product user communities is valuable for companies enabling them to incorporate users' innovative insights and problems solving skills.
League tables can be valuable for the individual orthodontist, groups of orthodontists, payment/insurance agencies, and the public to enable informed choice for orthodontic provision but must be correctly constructed so that users can have confidence in them.
It would be valuable for clinical immunoassay.
It should be valuable for engineering applications.
A large gene dataset is valuable for this type of investigation as it enables to compare the patterns of occurrence of motifs in both down-regulated and non-regulated genes.
The photostability of quantum dots also enables repeated imaging [50], which is valuable for higher resolution three-dimensional confocal imaging of fixed cells.
We anticipate that these ongoing efforts will prove to be valuable both as enabling tools for accelerating our understanding of microenvironmental regulation in GBM and as foundations for next-generation molecular screening platforms that may serve as a conceptual bridge between traditional reductionist systems and animal or clinical studies.
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