By Yitzhak Rosen, Noel Elman
"This publication is vital while designing, constructing and learning biomedical materials.… offers an outstanding review—from a sufferer, illness, or even genetic aspect of view—of fabrics engineering for the biomedical box. … This good offered publication strongly insists on how the fabrics can effect sufferers’ wishes, the final word force for biomedical engineering. …[presents an] fascinating and cutting edge evaluate from a sufferer concentration perspective—the booklet emphasizes the significance of the sufferers, which isn't usually lined in different biomedical material’s books."
—Fanny Raisin-Dadre, BioInteractions Ltd., Berkshire, England
Going a long way past the insurance in most traditional books at the subject, Biomaterials technological know-how: An built-in scientific and Engineering Approach deals a great evaluation of using biomaterials in scientific units, drug supply, and tissue engineering.
Combining dialogue of fabrics technology and engineering views with medical facets, this e-book emphasizes integration of scientific and engineering ways. specifically, it explores a number of functions of biomaterials in fields together with tissue engineering, neurosurgery, hemocompatibility, BioMEMS, nanoparticle-based drug supply, dental implants, and obstetrics/gynecology.
The e-book engages these engineers and physicians who're making use of biomaterials at quite a few degrees to:
- Increase the speed of profitable deployment of biomaterials in humans
- Lower the side-effects of this sort of deployment in humans
- Accumulate wisdom and adventure for bettering present methodologies
- Incorporate details and knowing appropriate to destiny demanding situations, corresponding to everlasting synthetic organ transplants
Using various participants from either the scientific and engineering aspects of the fields pointed out above, this ebook stands aside via emphasizing a necessity for the usually missing strategy that integrates those both very important facets.
Read Online or Download Biomaterials Science: An Integrated Clinical and Engineering Approach PDF
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Extra resources for Biomaterials Science: An Integrated Clinical and Engineering Approach
Grube E, Silber S, Hauptmann KE, Mueller R, Buellesfeld L, Gerckens U, Russell ME. 2003. TAXUS I: Six- and twelve-month results from a randomized, double-blind trial on a slow-release paclitaxel-eluting stent for de novo coronary lesions. Circulation 107: 38–42. 20. Colombo A, Drzewiecki J, Banning A, Grube E, Hauptmann K, Silber S, Dudek D, Fort S, et al. 2003. Randomized study to assess the effectiveness of slow- and moderate-release polymer-based paclitaxel-eluting stents for coronary artery lesions.
2005. “Full metal jacket” (stented length > or = 64 mm) using drug-eluting stents for de novo coronary artery lesions. Am Heart J 150: 994–99. 79. Hoffmann R, Mintz GS, Popma JJ, et al. 1996. Chronic arterial responses to stent implantation: A serial intravascular ultrasound analysis of Palmaz-Schatz stents in native coronary arteries. J Am Coll Cardiol 28: 1134–39. 80. Spuentrup E, Ruebben A, Mahnken A, et al. 2005. Artifact-free coronary magnetic resonance angiography and coronary vessel wall imaging in the presence of a new, metallic, coronary magnetic resonance imaging stent.
For example, microsensor devices typically convert a mechanical movement into an electrical signal. Conversely, microactuators typically convert electrical signals into mechanical movements. Over the past 25+ years MEMS technologists have created an extremely large number of microsensors for almost every imaginable sensing modality, including pressure, temperature, inertial force, chemical and biological species, magnetic fields, and radiation. Importantly, many of these micromachined sensors have demonstrated performances exceeding those of their macroscale equivalents.
Biomaterials Science: An Integrated Clinical and Engineering Approach by Yitzhak Rosen, Noel Elman