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Thus, no additional information relevant to face vs. checkerboard discrimination is revealed during the morph period.
In particular, we almost never found any strong ERP that discriminated fearful from happy expressions during the morph period (Figure S1B and S2B, blue).
The ventral superiority was expected during the static period; surprisingly, however, this held true for discrimination of faces from checkerboards during the morph period as well (A'fc at t = 1 2 sec).
In our paradigm, the identity of a face is revealed to subjects at the onset of a trial and remains constant throughout the trial, in particular, it is constant during the morph period.
Our analysis based on the average high-gamma activity during the morph period showed that many electrodes in the ventral temporal cortex increased activity to faces, while those in the lateral temporal cortex increased activity to checkerboard patterns.
Assuming that high-gamma power was correlated with local multi-unit activity [10] [12], we examined whether the average high-gamma power (50 150 Hz, from t = 1.1 1.9 sec, during the morph period) was higher for faces than for checkerboards.
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This paper focuses on the aeroelastic characteristics of a folding wing during the morphing process.
This paper focuses on the nonlinear aeroelastic characteristics of a folding wing in the quasi-steady condition (namely at fixed folding angles) and during the morphing process.
We attribute this increase in the sp3 bonding to the change in nature of the carbon during the morphing from the graphene structures into the non-graphitic or Rh6-II.
The folding wing structure is modeled by using the flexible multi-body dynamics approach, and an efficient method is proposed to calculate the aerodynamic force of the folding wing during the morphing process.
The aeroelastic responses of the folding wing with cubic stiffness are simulated, and the results show that the motion types of aeroelastic responses in the quasi-steady condition and during the morphing process are all sensitive to the initial condition and folding angle.
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