Innovations in Biomedical Engineering by Marek Gzik, Ewaryst Tkacz, Zbigniew Paszenda, Ewa Piętka

By Marek Gzik, Ewaryst Tkacz, Zbigniew Paszenda, Ewa Piętka

This bookpresents the complaints of the “Innovations in Biomedical Engineering IBE’2016” convention hung on October 16–18, 2016 in Poland, discussing contemporary study on suggestions in biomedical engineering. The prior decade has visible the dynamic improvement of progressively more refined applied sciences, together with biotechnologies, and extra normal applied sciences utilized within the region of lifestyles sciences. As such the booklet covers the broadest attainable spectrum of topics concerning biomedical engineering options. Divided into 4 elements, it offers cutting-edge achievements in:

• engineering of biomaterials,

• modelling and simulations in biomechanics,

• informatics in medicine

• sign analysis

The ebook is helping bridge the distance among technological and methodological engineering achievements at the one hand and medical specifications within the 3 significant components analysis, remedy and rehabilitation at the different.

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Extra resources for Innovations in Biomedical Engineering

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C 63, 155–163 (2016) 18. : Effect of surface wettability and contact time on protein adhesion to biomaterial surfaces. pl Abstract. This study presents the results of tests of friction processes and fretting wear of NiTi shape-memory alloy, which is used in orthodontics and surgery. This research problem is significant because nickel ions released as a result of nitinol wear exhibit toxic action in the human body. Knowledge about wear mechanisms will allow for more effective prevention of processes leading to the destruction of elements of medical constructions and extend the time of their safe operation.

Scripta Materialia 50, 255–260 (2004) 7. : Influence of surface modification on properties of stainless steel used for implants. Arch. Metall. Mater. 60(4), 2965–2969 (2015) 8. : Mechanical properties of ALD TiO2 layers on stainless steel substrate. Materialwissenschaft & Werkstofftechnik 47(5), 1–9 (2016) 9. : The study of physicochemical properties of stabilizing plates removed from the body after treatment of pectus excavatum. Acta Bioeng. Biomech. 2, 35–44 (2015) 10. : Corrosion resistance, EIS and wettability of the implants made of 316 LVM steel used in chest deformation treatment.

In the previous paper of the authors [9] a negative influence of the surface damage on the corrosion resistance of the implants in comparison to the samples taken from implants in the initial state was also observed. The increase of corrosion resistance of steel CrNiMo was obtained by the authors of the paper [17] who covered the steel with SiO2 layer. For the surface prepared in such way, the values of breakdown potential Eb ranged from +1543 mV +1518 mV for the samples subjected to ethylene oxide sterilization.

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