Papers by Keyword: Clinical Applications

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Abstract: Because of their size and versatile chemistry, nanomaterials represent today powerful tools for (bio) sensing applications. Various types of nanomaterials have proven to be practical, not only for the determination of clinically relevant parameters, but also for diagnostics, drug delivery and treatment of diseases (e.g. cancer). In this short review, types of nanomaterials used in medical applications are briefly described along with some of their applications where the nanomaterials optical properties can be exploited. The question of the toxicity of nanomaterials and the issue of future trends are also raised.
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Abstract: This paper reports on the research into multiphase bone substitutes carried out by laboratories from the ‘Pays de la Loire’ region in France. This collaborative research was funded by both the French Government and the Regional Council in the period 2000-2007. Calcium phosphate bioceramics, polymers and combinations have been developed as bone substitutes for various maxillofacial and orthopaedic applications. These bone substitutes should support and regenerate bone tissue and resorb after implantation. In the bone tissue engineering area, they have been combined with autologous bone marrow cells or bioactive factors. The bone substitutes were tested in various animal models mimicking clinical situations or under pathological conditions (osteoporosis). In order to complete our research, the multiphase materials were also evaluated in clinical trials.
Abstract: Clinical applications of Calcium phosphate compounds are done in most cases with powders of Calcium-tri-phosphate and/or Hydroxylapatite to enhance the surgery of orthopaedic repair. The application of microspheres of these compounds has big advantages to faster surgery and higher strength of the bone structure. The special processes to produce microspheres of narrow size distribution and high sphericity out Calcium-tri-phosphate and Hydroxylapatite are described. Properties and composition of these microspheres as calcined and as sintered are given.
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