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The peak at 1711 cm−1in the FTIR spectrum of the CdS embedded glue (sample C4) (Fig. 2b) corresponds to the C=O stretching frequency whereas in the host glue matrix the C=O stretching frequency is at 1735 cm−1.
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VCT scan revealed density values in all but the Pluronic F127 samples, with Houndsfield unit values comparable to native bone in collagen I and fibrin glue samples.
Trypsin and transglutaminase activity was found in all barnacle glue samples assayed.
In the same way, traces of glue and samples of it were analyzed: the absorption bands of the spectra collected are characteristic of proteinaceous substances (1650, 1550, 1452 cm−1 Amide I, II, III; FTIR spectrum not shown).
The impedance measurements were performed using radio frequency (RF) techniques by gluing the sample with a conductive silver paint between two micro-strip lines with 50 Ω of characteristic impedance.
The presence of hydroxyproline, marker of collagen, allowed the identification of animal glue in the sample.
At selected specimens, a stretchable nitrile rubber patch was glued onto the sample surfaces in the ligament region.
Transducers were glued to the sample, which was covered with RTV rubber (Shin-Etsu Chemical, KE-45).
Then they were plated by gold membrane on the surface of the samples glued to the sample table using ion sputtering coating machine and epicuticular waxes were observed using a scanning electron microscope.
Figure 4 shows the optical absorption spectra (OAS) of CdS nanocrystals in glue matrix of samples C1, C2, C3 and C4.
Four strain gauges (20-mm strain gauges with a gauge factor of 2.12 supplied by Tokyo Sokki Kenkyujo Co. Ltd. (TML) Shinagawa-ku, Tokyo, Japan) were glued onto each sample.
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