By Tuğrul Özel
Biomedical units: layout, Prototyping, and production gains basic discussions of all elements of fabrics processing and production methods throughout quite a lot of scientific units and synthetic tissues. -Represents the 1st compilation of knowledge at the layout, prototyping, and manufacture of clinical units into one quantity -Offers in-depth assurance of scientific units, starting with an introductory review via to the layout, manufacture, and functions -Features examples of various scientific functions of units, together with biopsy micro forceps, micro-needle arrays, wrist implants, spinal spacers, and furniture -Provides scholars, medical professionals, scientists, and technicians attracted to the improvement and purposes of clinical units definitely the right reference source. Read more...
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Extra info for Biomedical devices : design, prototyping, and manufacturing
Complications and functional assessment. Clin Orthop 1997;339:76–81. 1097/00003086-199706000-00011).  Hardouin P, Anselme K, Flautre B, Bianchi F, Bascoulenguet G, Bouxin B. Tissue engineering and skeletal diseases. Joint Bone Spine 2000;67:419–424. 1 MEDICAL DEVICE DEVELOPMENT (MDD) Product development means to create products with new or different features to satisfy different customer needs or to improve the satisfaction of existing ones . During this process, there is a transformation of information from a need, requirements, and restrictions to a physical structure that is able to meet these demands .
3 Simplified schema of the linear medical device development model according to Pietzsch et al. . the formulation of attribute-driven specification (ADS) to consider several types of knowledge such as engineering, medical, marketing, quality, regulatory issues, and manufacturing. Three types of attributes are proposed: customer, functional, regulatory, which have to be documented and quantified. Also, ADS-driven design control is proposed for assuring the fulfilling of the requirements. Neelamkavil et al.
The future of dental devices in digital. Dent Mater 2012;28:3–12.  Lee JW, Nguyen TA, Kang KS, Seol Y, Cho D. Development of a growth factor-embedded scaffold with controllable pore size and distribution using microstereolithography. Tissue Eng A 2008;14(5):835. OVERVIEW 21  Lee JW, Lan PX, Kim B, Lim G, Cho D. 3D scaffold fabrication with PPF/DEF using micro-stereolithography. Microelectron Eng 2007;84(5–8):1702–1705.  Subburaj K, Nair C, Rajesh S, Meshram SM, Ravi B. Rapid development of auricular prosthesis using CAD and rapid prototyping technologies.