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The suitability of PHA for inclusion in drug delivery or other biomedical applications will depend not only on the biodegradation properties but also on their biocompatibility.
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Further use of PFAFs by researchers from nanoscience, material science, and biomedical science, and particularly their practical applications, will depend on the availability of the PFAF samples in larger quantities and with sufficient purity.
Some of the specific applications will depend on neural networks.
However, criteria of class Applications will depend on which applications are installed on the target device.
Eventual optimal application will depend on specifications of specific target groups.
Fabrication of micro- and nano-fluidics using NIL for biomedical applications will also be introduced briefly.
Next, a survey of MEMS devices being developed for various biomedical applications will be illustrated with current examples.
Further, developments of different smart hydrogels including their preparation and biomedical applications will be discussed in depth.
The suitability of this surface modification for biomedical applications will be confirmed by wear tests and in vitro biocompatibility assessments.
The suitability of this coating for biomedical applications will be confirmed by wear tests and in vitro biocompatibility assessments.
Various biomedical applications will also be discussed.
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