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Unlike control specimens (treated with DMSO), DAPT-treated cochleas showed supernumerary, myo6-positive hair cells, based on surface views where the normal mosaic-like organization of the sensory epithelium (Fig. 1B) was in places lost.
Specimens treated with 2.5 and 5.0% nano-ZnO showed mechanical surface changes (i.e. fuzzing) that was not visible in the controls or specimens treated with 1% concentration.
The specimens treated in the chamber had layers made almost exclusively of wustite.
The mechanism of SCCO2 treatment was first analysed and specimens treated in different conditions were illustrated.
Results revealed no change in ZnO retention in specimens treated with 1% nano-ZnO, but specimens treated with 2.5 and 5.0% nano-ZnO showed a loss of 65and58%8% treatment, respectively.
However, specimens treated with high concentrations of nano-ZnO showed 58 65% chemical depletion after 12 months of outdoor exposure.
However, at higher dosage levels (7.5 and 10%), the trend changed drastically especially for specimens treated with hydrated lime.
The swell values reached by specimens treated with quicklime are marginally lower than that of hydrated lime.
Uncoated samples and specimens treated with different types of surface coatings were studied.
Sorptivity was significantly reduced in accelerated carbonation specimens treated with bacteria compared to other treatments.
Collections that contain specimens treated with mercuric chloride can possibly expose herbarium employees and visitors to mercury.
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