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Nanotechnology in medical textile

Nanotechnology in medical textile


The research will focus on nanotechnology placing weight on effectiveness and impact of nanotechnology in medical textile context. There is ample need to recognize what nanotechnology is about, in such definitions, aspects, processes and others in comprehensive literature organization back up. Thus, there is importance of recognizing success of medical textile as brought about by nanotechnology presence. The core methodology will comprise of gathering and collating research papers that will bring in literature appraisal and evaluation as supported by various academic accepted and reviewed articles or journals that relates to effectiveness and impact of nanotechnology to be adopted and linked within the medical textile industry. The research papers are to be critique in the sense that literature integration is an ideal factor for discussion and analysis. The total journal articles will be about 6 to 8, and journal critique will be the core essence from wherein the researcher will assume deep understanding of the journal in terms of such information used in literature and methodology relevance and how nanotechnology is being applied, executed and presented in terms of several example cases or situations at hand. Another, possible methodology is by means of case study approach adhering to secondary research sources that deal with nanotechnology found in medical textile and in combination with primary research through case based survey questionnaire in statement formation and be assessed as well as evaluated through five point scaling system that ranges from 1 to 5 response ratio classification, the anticipated outcome of research will be in frequency percentage pattern as needed for calculation and tabulation of survey statement responses. The example tabular illustration can be utilized for the case survey approach (see below format).


The Effectiveness of Nanotechnology in Medical Textile











































No



STATEMENTS













1



Medical nanotechnology applications are still in their infancy, an increasing number of products is currently under clinical investigation and some products are already commercially available, such as surgical blades and suture needles, contrast-enhancing agents for magnetic resonance imaging, bone replacement materials, wound dressings, anti-microbial textiles, chips for molecular diagnostics and microneedles



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2



Nanotechnology is to exploit distinct technological advances of controlling the structure of materials at a reduced dimensional scale approaching


individual molecules and their organized aggregates or supramolecular structures



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3



Nanomedicine is now within the realm of reality, though there is some concern about the safety of nanoparticles introduced in the human body



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5




The Impact of Nanotechnology in Medical Textile












































No



STATEMENTS













1



Nanotechnology is powerful emerging technology, which is expected to have substantial impact on medical technology now and in the future. The potential impact of novel nanomedical applications on disease diagnosis, therapy, and prevention is foreseen to change health care in a fundamental way



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2



Nanotechnology may fundamentally transform science, technology, and


society offering a significant opportunity to enhance human health in novel ways, especially by enabling early disease detection and diagnosis, as well as precise and effective therapy tailored to the patient



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3



Some surgical aids already benefit from nano-structured material, such as surgical blades with nanometre-thick diamond coating and surface roughness in the same order of magnitude, and suture needles incorporating nano-sized stainless steel particles



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In addition, preliminary literature review encounter is a must for this research to achieve completion and success in such endeavor possible. There integrates main question as to how can be nanotechnology be of effective stature and adhere to positive impact towards medical textile industry? Thus, looking into in-depth processes and applications pertaining to nanotechnology, for instance as medical practice enter new era with the exciting new applications of nanoscience and technology, research might introduce philosophy and the principles of controlled drug delivery and the generation of tissue, discusses new research into nanoporous materials and how encapsulation of various medical substances can create stimuli-controlled precision delivery systems as research matter goes on to highlight the process of materials for medical applications citing successful process for coating them onto flexible materials such as fabrics. Nanotechnology is rapidly moving to the forefront of the public consciousness as many people think of nanotechnology, they think of exotic kinds of devices: nanomachines or medical applications in which tiny machines circulate in the bloodstream cleaning out fat deposits from our arteries. However, far from being future technology, nanotechnology is already with people is not necessarily about manufacturing small things, but rather, making big things work better, with less waste. Novel textiles, sports equipment and cosmetics are already on the market based on advances in nanotechnology, as are CDs, air bag pressure sensors and inkjet printers. The present development of textile market is connected with an ever increasing demand for new functionalities for highly specific applications. At the same time, the industrial supply has been restricted to only a few types of synthetic fibers. Given that background, surface modification became one of the most important topics to create new textiles. Beside other techniques, the fictionalization of fibers by making use of concepts of the nanotechnology is part of our work for several years. Coatings based on nanosols and inorganic-organic hybrid polymers, derived from sol-gel process, have an immense potential for creative modifications of surface properties and can be applied with a comparatively low technical effort and at moderate temperatures. Nanotechnology at the molecular level can be used to develop desired textile characteristics, such as high tensile strength, unique surface structure, soft hand, durability, antimicrobial properties and others. Indeed, advances in Nanotechnology have created enormous opportunities and challenges for medical textile industry as there needs to be aware of recent applications of Nanotechnology as they relate to medical textile fibers and fabrics. Nanotechnology refer to promising field for generating applications in medicine, only few nano products are currently in use for medical purposes for example at nanoscale, silver exhibits remarkably unusual physical, chemical and biological properties as the use of nanosilver is becoming more and more widespread in medicine and related applications and due to increasing exposure toxicological and environmental issues need to be raised. In sharp contrast to the attention paid to new applications of nanosilver, few studies provide only scant insights into the interaction of nanosilver particle with the human body after entering via different portals. Nanotechnology is to be used to enhance the properties of existing materials rather than reduce production cost and improve medical textile quality.

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