By Brown E. W.
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Additional resources for An Explanation of the Gaps in the Distribution of the Asteroids According to Their Periods of Revolution
The few examples mentioned above are only a few possibilities that atmospheric plasmas can offer. Furthering our understanding of this technology will see atmospheric plasmas become equally as important, if not more so, than existing surface engineering techniques in the very near future. In summary the use of plasma polymers in preparing modified surfaces for biomaterials has developed since the early 1970s to become a foundation technique. Rather than attempting to capture a complete history the examples above serve to highlight the role that these surfaces have played in the (continuing) evolution of our understanding of the biomaterial-biological interface.
2007) Macroscopic description of plasma polymerization. Plasma Processes and Polymers, 4, 229±238. , Jacobs, P. A. & Sels, B. F. (2007) Dielectric barrier discharge at atmospheric pressure as a tool to deposit versatile organic coatings at moderate power input. Plasma Processes and Polymers, 4, 145±157. , Roeffaers, M. B. , Jacobs, P. A. & Sels, B. F. (2008) Protein immobilization using atmospheric-pressure dielectric-barrier discharges: A route to a straightforward manufacture of bioactive films.
In doing so cells are repelled from the surface allowing for an entire cell sheet to be transferred to a tissue or wound site (Matsuda, 2004). Characterization of the surface chemical and mechanical properties of a plasma polymerzied NiPAAm film has recently been presented by Cheng et al. , 2005). The wettability and phase transition temperature (of 31±32 ëC) was close to that of traditional polyNiPAAm and, although the plasma polymerized NiPAAm had a higher elastic moduli and decreased swelling rate, attributed to a greater degree of cross-linking in the plasma polymer film, the values were still in the range characteristic of such hydrogels.
An Explanation of the Gaps in the Distribution of the Asteroids According to Their Periods of Revolution by Brown E. W.