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Beilstein J. Nanotechnol. 2018, 9, 3039–3047, doi:10.3762/bjnano.9.282
Figure 1: a) The backswimmer N. glauca. The silvery shine on the surface of the hemelytra is caused by the to...
Figure 2: a) Left hemelytron of the backswimmer N. glauca. Four sections, defined by Wachmann [17], are shown. b)...
Figure 3: Transmission electron microscopy images of setae on the hemelytra of N. glauca. a–d) Clavus. a) Tub...
Figure 4: a) Three-dimensional reconstruction of a hemelytron µCT scan. The tomography data allowed an analys...
Figure 5: Toluidine blue/borax stained semi-thin sections through the clavus of a hemelytron of N. glauca (do...
Figure 6: a) Image of a water droplet detaching from the surface of N. glauca. The deformation of the droplet...
Figure 7: Proposed Notonecta forewing surface function. An air layer is kept in between the setae. The club-s...
Figure 8: a) Setup used for the proof of concept for the biomimetic Notonecta sensor inspired by the backswim...
Beilstein J. Nanotechnol. 2011, 2, 276–283, doi:10.3762/bjnano.2.32
Figure 1: Responses of sensor platform I to a human finger that moved alongside the ALLC with a velocity of a...
Figure 2: A typical AN response to a dipole flow field. The sinusoidal voltage used to drive the mini-shaker ...
Figure 3: The response of an artificial CN exposed to the vortices shed from a stationary cylinder (diameter ...
Figure 4: Responses of ANA (upper line in each graph) and ANB (lower line in each graph) (for ANA and ANB see ...
Figure 5: Responses of AN1 to AN8 (cf. Figure 6B) to bulk water flow. Note that the most prominent peak visible in the...
Figure 6: Horizontal (left) and vertical (right) cross sections of platforms III (A) and IV (B) that were use...
Figure 7: Velocity calculated with data obtained from AN1 to AN8 as function of bulk flow velocity. Note that...
Figure 8: Scheme of an artificial CN. The drawing is not to scale.