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Our results also extend claims about the source of sound symbolic effects, by demonstrating that different poles of the same semantic dimension differ in their predictability from form cues; that some previously unsuspected dimensions show strong symbolic effects; and that features, phonemes, and letters may all contribute to sound symbolism.
We have confirmed and extended our previous analyses of prospectively isolated mouse mammary epithelial subpopulations by demonstrating that different levels of 33A10 antibody staining identify different luminal epithelial subpopulations.
Crucially, by demonstrating that different point mutations alter the regulation of some but not other processes, we have proven that the pleiotropy observed in sgol2 Δ/Δ oocytes is not due to knock on effects (secondary or even tertiary pathology) of eliminating a single function.
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We confirm these results by demonstrating that PGCs from a different layer breed of chickens can be propagated for extended periods in vitro.
Our results suggest an important caveat to these findings by demonstrating that natural selection may favour different traits across years depending on environmental conditions.
We expanded upon this knowledge by demonstrating that HEK293 cells express at least 75 different GPCR mRNAs.
Because as1/ocs-like elements are known to play important roles in ROS-responsive gene expression [ 30, 38, 41], we reasoned that the functionality of the predicted regulatory module in relation to a possible ROS-mediated signaling can be further justified by demonstrating that the different components of the module can indeed be induced by exogenous ROS.
We evaluated experimentally the difficulty of conducting known plaintext attacks on VoIP by demonstrating that a sound recorded simultaneously by different sources results in apparently random encoded files.
We also compared the selected DARPins to a Fab fragment previously selected by phage display and demonstrate that different epitopes are recognized, unique to each class of binding molecules.
In this current study, we aimed to investigate the effect of different protein substrates on the secretion of proteases by Af. Results demonstrated that different protein substrates resulted in significantly different levels of protease secretion by Af.
Secondly, as indicated by highlighted overlap in Fig. 10, it demonstrates that different organizations can share or differ in preference for particular "invalid" molecule representations, with each organization potentially providing previous unimagined atom configurations that may or may not be salvageable.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com