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In this study, we observed that low oxygen tensions drastically increased the number and size of sphere formation, as well as the SP fraction in cochlear spiral ganglion SPCs, indicating that ex vivo expansion of spiral ganglion SPCs under hypoxia may be practically applied for the large-scale production and maintenance of SPCs for stem cell-based replacement therapy.
A sphere ROI 6 mm in radius was built centered around each coordinate (using the MarsBaR toolbox for SPM); this size was chosen because it generated sphere ROIs generally comparable (or slightly smaller) in size with the clusters reported in these VBM studies, and this size of sphere ROI was commonly adopted in the literature employing similar analysis strategy.
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The size of sphere-like shaped ZnO nanoparticles was measured in the range of 20 80 nm and the size of pyramid-like shaped annealed samples was achieved in the range of 40 100 nm with less agglomeration.
A simple way to control the photonic bandgap is to change the size of spheres.
While it is over 32°C, the average size of spheres decreases to ~45 nm (43°C) and ~30 nm (55°C), respectively.
The ease with which these spheres could be fabricated and the ability to control the size of spheres should facilitate investigations of their scope for drug delivery.
With the increase in heating time the gas pressure inside the spheres increased that increased the size of spheres and finally this gas comes out leaving behind an opening and pores on the surface of these hollow porous spheres.
Meanwhile, together with the sample synthesized with 0.90 M HCl (see Figure 2a,b), it can be found that the rod diameter, rod density, and size of spheres gradually enhance with increasing HCl concentration.
The size of spheres was quantified in vitro at day 6.
The size of spheres as determined from SEM micrographs (Fig.; Table 1) was obtained after fixing and drying.
Tumour spheres were counted and photographed at day 5. Number of spheres per well and size of spheres over 100 μm per well were documented.
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