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Smart Biomaterials - a Review

机译:智能生物材料-评论

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摘要

Smart biomaterials are designed to act as an "on-off" switch for various applications from macro- to nanometer scale which self-heals or responds to the changes in the environment when one of its property changes by the external conditions like temperature, light, pressure or electricity. This change is reversible and can be repeated for several times. When used for healthcare, it improves its performances in medical devices thus promoting desired biological responses like healing, tissue growth etc. Smart materials can deliver therapeutics to the designated site of the body. It is a challenging task to sketch out the classification of smart materials due to its different approaches and quantity of publications related to this topic, is almost impossible to provide a comprehensive review. There are various types of smart materials namely - piezoelectric materials, shape memory polymers or alloys, temperature responsive polymers, photomechanical materials, self-healing materials, thermoelectric materials etc. The current review has been focused on smart biomaterials primarily on auxetic materials which are automatically adjustable with strength and thickness in response to the applied forces as they have memorial ability to return to its original state on dissipation of the stresses. Here, the main emphasize is on biomedical applications of auxetic materials which comes under the category of 16 smart materials of the twenty first century having a great impact in biomedical area. The information provided through this review may be beneficial for the future development of biomedical devices and their clinical applications consequently improving the quality of patient's life.
机译:智能生物材料旨在充当“开关”开关,用于从宏观到纳米尺度的各种应用,当其特性之一随外界条件(例如温度,光照,压力或电力。此更改是可逆的,可以重复多次。当用于医疗保健时,它可以改善其在医疗设备中的性能,从而促进所需的生物学反应,例如愈合,组织生长等。智能材料可以将治疗剂传递到人体的指定部位。概述智能材料的分类是一项艰巨的任务,因为智能材料的分类方法和与该主题相关的出版物数量不同,因此几乎不可能进行全面的综述。智能材料的类型多种多样,包括压电材料,形状记忆聚合物或合金,温度响应聚合物,光机械材料,自修复材料,热电材料等。当前的研究重点是智能生物材料,主要是自动的膨胀材料可调节强度和厚度,以响应所施加的力,因为它们具有消除应力后恢复其原始状态的记忆能力。在这里,主要的重点是在金属材料的生物医学应用中,该材料属于二十世纪的16种智能材料,在生物医学领域有很大的影响。通过此评论提供的信息可能对生物医学设备及其临床应用的未来发展有益,从而改善了患者的生活质量。

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