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Titlebook: Shape Memory Implants; L. Yahia Book 2000 Springer-Verlag Berlin Heidelberg 2000 Shape memory alloy.Surgery.biomaterial.bone.drug delivery

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Corrosion Behavior of NiTi Alloys in a Physiological Saline Solutionmartensitic transformation than do conventional orthodontic wires made of stainless steels or Co-Cr alloys [14]. The shape memory effect has been effectively utilized in the fixture of both blade-type and perio-root-type dental implants to provide a desirable firm fixation with bone [8,22].
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The Surgical Correction of Scoliosis with Shape-Memory Metalnctionality refers to the ability of the device to perform the purpose for which it is designed. In this chapter both aspects of a new scoliosis correction system, based on shape memory metal are discussed [53,59].
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ts continue to expand in the fields of vascular and orthopaedic surgery, minimally invasive surgery and drug delivery systems. This book is to provide a state of the art of SMA implants and devices. For the first time long-term clinical experiences and techniques of SMA biocompatibility are presented.978-3-642-64118-3978-3-642-59768-8
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Book 2000materials in living organisms being reduced throughout the world now the use of SMA implants continue to expand in the fields of vascular and orthopaedic surgery, minimally invasive surgery and drug delivery systems. This book is to provide a state of the art of SMA implants and devices. For the fir
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Clinical Application of Shape-Memory Alloys in Orthodonticsof superelastic NiTi alloys promised to almost eliminate the force degradation problem and to design force delivery systems with precisely tuned force magnitudes. Within the scope of this chapter we look into a number of aspects related to the use of NiTi materials in orthodontics.
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Bioperformance of Shape Memory Alloysd other mechanical characteristics in response to temperature or electromagnetic fields. The four most common actuator materials being used today are shape-memory alloys, piezoelectric ceramics, magnetostrictive materials and electrorheological and magnetorheological fluids.
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Processing and Quality Control of Binary NiTi Shape Memory Alloysn the field of medical technology the NiTi alloys (NiTiNOLA) had their breakthrough during the past years as implant or instrument e.g. for minimal invasive surgery. The improved understanding of the metallurgical principles was certainly the basis for this success. But probably more important were
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