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Exact(6)
Because our methods are based on simple physical principles, they should generalize in a straightforward way to many other hyperbolic systems.
The reason for not using the number of data files is because our methods are designed to maintain the balance of both large and small files.
Furthermore, because our methods are computationally simple they lend themselves well to eventual implementation in clinical decision support systems and improved patient monitors that incorporate state information.
However, our ability to precisely resolve the thalamic nuclei implicated in loss of thalamo-cortical functional connectivity is limited because our methods are not sensitive to small focal differences.
STL methodology can provide pooling, but because our methods are designed to work with limited data, S t at a time t uses data in a neighborhood of t, and not across years.
We have included the following statement in the Methods section (Decreased thalamo-cortical and cortico-cerebellar functional connectivity during dexmedetomidine-induced unconsciousness): "However, our ability to precisely resolve the thalamic nuclei implicated in loss of thalamo-cortical functional connectivity is limited because our methods are not sensitive to small focal differences".
Similar(54)
This is because our method is initialized by saliency detection, which can filter out background stuff.
Because our method is view-based, unexpected changes of camera views might disturb robot motions.
Because our method is objective and automatic, it is not prone to operator errors that could be introduced from manual correction of the residual aberrations.
Note that we do not have to know the object information such as its dimension and shape because our method is view-based.
When less than three sink nodes are deployed and each of them constructs its own potential field, some sensor nodes may have the same virtual coordinate because our method is based on a theory of triangulation.
More suggestions(15)
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