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Within the fate map of the wing imaginal disc, whereas posterior notum or ventral pleura cells did not significantly promote caspase-3 activation, posterior wing margin and pouch cells strongly activated caspase 3.
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Grafts of wing bud tissue from GFP chicken embryos were used to fate map regions of the wing bud giving rise to each digit; 3D images of the grafts were captured using OPT and mapped on to the same models.
The digitized fate maps of the chick wing represent a new resource which can be used in future studies in relation to gene expression patterns.
Previous fate maps of the chick wing using DiI labelling to trace cell lineages showed that all three digits come from cells in the posterior part of the early wing bud tip and that this region expands across the antero-posterior axis as the bud grows out [33], [6].
The physical deformation of the wing surface was mapped at 38%, 58%, 78%, and 98% span using a stereo vision motion tracking system.
According to the length of the wing, adults BPH are biomorphic with varying wing lengths.
Torsional stiffness of the wing and the distribution of mass along the wing are calculated.
"The right side of the wing just sort of broke".
A template consisting of the wing outline and veins L2 to L5 is fitted to the wings, and then wing length, wing width, and wing area are calculated.
Dorso-ventral muscles are attached directly to elements of the wing base,directly actuating the wings.
Both genera might show some level of convergence in wing shape driven by a more effective display of the wing patch at the base of the wings.
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