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These orientation selective cells respond best to oriented line segments or edges, respectively.
These orientation relationships are related by {1 0 2} twinning of magnesium or twinning of the icosahedral phase.
These orientation gradients have a common rotation axis and are explained in terms of dislocation inheritance during the growth of the α′ plate.
These orientation relations are then exactly recovered by the phase-field model at finite thickness via a novel parametrization strategy based on invariance solutions of the Allen Cahn equations.
These orientation violations can be corrected by reversing the sequence that is flanked by each pile-up.
Variants of these orientation relationships have been frequently observed.
Similar(41)
These orientations exhibit a wide range of both spatial and orientational heterogeneity.
The second category (shown by red lines) displays fast azimuth oriented at an angle greater than 90° from North; these orientations are observed east of 12°E (Fig. 3).
Most persons live their lives holding and moving between both these orientations.
In V1, the squirrel has many orientation-selective neurons, and these orientation-selective cells can be further subdivided into simple and complex cells.
For Ricoeur, these orientations are complementary, not incompatible.
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