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Titlebook: Sustainable Material for Biomedical Engineering Application; Wan Safwani Wan Kamarul Zaman,Nurul asma Abdullah Book 2023 The Editor(s) (if

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,Utilisation of Human “Wastes” as Materials in Biomedical Engineering Application,ble Development Goals of the United Nations, particularly Goals 3 and 12. Hence, several potential human wastes including hair, nails, urine, adipose tissue and post-birth waste are reviewed in this chapter.
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Food Waste-Derived Sources: Synthesis, Properties and Applications in Biomedical Engineering,onverting food wastes into biomaterials such as bacterial cellulose (BC) and hydroxyapatite (HA) and discuss the basic requirements and properties for various biomedical applications. A list of commercial brands of these biomedical/healthcare products and their manufacturing companies is also included for reference.
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Chitosan from Marine Biowaste: Current and Future Applications in Tissue Engineering,ine biowaste sources used to produce chitosan and its derivatives, as well as its applicability in combination with other polymers, emphasising current and prospective applications in tissue engineering.
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Engineered Microbial Sensing Element-Based Biosensor for Sustainable Biomedical Engineering Applicand optical-based microbial biosensors that are mostly used for medical application, which represent their transducer’s working principles. A deep knowledge on the sensing elements as well as transducer principles is very important in order to optimize the performance of these devices.
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Progress in Biomedical Applications Using Sustainable Nanoparticles, is highly possible. Herein, the authors attempt to highlight recent updates on nanoparticles with an emphasis on the benefits and risks imposed on the environment and living beings. In particular, the chapter presents the assessment of green synthesized nanoparticles from a sustainability viewpoint.
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Roles of Sustainable Biomaterials in Biomedical Engineering for Ischemic Stroke Therapy,the neurological recovery effects triggered by these engineered biomaterials after being implanted into in vivo ischemic stroke models are highlighted as well. In brief, this chapter presents the roles and potentials of sustainable biomaterials in biomedical engineering for ischemic stroke therapy.
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