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Figure 7 illustrates our analysis for an example VM neuron using the same conventions as in Figure 5, except this time only showing RF maps in the original spatial target (Ts) frame (Fig. 7 D) and the model that provided the best fit (Fig. 7 E).
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T HOSIG = 3 * T frame.
with the period T frame between two consecutive time frames.
where θ Net/MAC = ∑ Payload T frame (5).
(a,b) Test frame 1,2 of size 1024×1024for blotch detection.
T S C N min = 2 * T frame T S C N max = 20 m s.
This FRU algorithm performs forward motion estimation to estimate an initial interpolated frame from the (t) frame to the (t – 1) frame.
The average current absorbed Iframe(k) at frame k is thus I frame ( k ) = η k _alive + η alarm I TX T TX + I wk T wk T frame + 1 - T sleep ( k ) T frame I RX + T sleep ( k ) T frame I sleep, (7).
Then, we also find the corresponding block in the (t) frame by computing NSAD t with the interpolated region in the (t – 1/2) frame.
As previously explained, the SCI trigger is calculated as T SCNmax = 20 ms + T HOSIG = 20 ms + 3 * T frame.
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