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4 results for “Biomedical engineering”
Determinant Factors in Systematic Review of Biomedical Engineering Topics
<p>Students and researchers around the world are increasingly turning to literature reviews. Review articles give you a broad picture of the field and help synthesize published research that is expanding at a rapid pace.</p> <p>Professionally crafted literature reviews, whether written by a student in class or by an experienced researcher for publication, should aim to add to the literature rather than detract from it. This is not an easy feat, but it is a necessary one.<br> Systematic reviews aim to identify, evaluate, and summarize the findings of all relevant individual studies on a related topic; which makes the available evidence more accessible to decision makers.</p> <p>Research Question<br> • Provide enough detail so that the audience can easily understand your purpose without the need for additional explanation.</p> <p>• It is not answered with a simple “yes” or “no”, but requires synthesis and analysis of ideas and sources before writing a response.</p> <p>Search strategy<br> • Organized structure of key terms used to search databases.</p> <p>• Combine key concepts to get accurate results.</p> <p>Inclusion and exclusion criteria<br> They are determined after the research question is established, usually before the search is performed, however, scoping searches may be necessary to determine the appropriate criteria</p> <p>Synthesis<br> • A review matrix and summary tables are convenient ways to quickly summarize and reorganize qualitative information and observations to achieve a preliminary outline.</p> <p>Systematic reviews serve several critical functions</p> <p>Provide synthesis of the state of knowledge in a field, from which future research priorities can be identified;</p> <p>Addressing questions that could not otherwise be answered by individual studies;</p> <p>Identify problems in primary research that should be rectified in future studies;Generate or evaluate theories about how or why phenomena occur.</p>
Dataset for Engineering multifunctional dynamic hydrogel for biomedical and tissue regenerative applications
<p><span>Hydrogels have emerged in various biomedical applications, including tissue engineering and medical devices, due to their ability to imitate the natural extracellular matrix (ECM) of tissues. However, conventional static hydrogels lack the ability to dynamically respond to changes in their surroundings to withstand the robust changes of the biophysical microenvironment and to trigger on-demand functionality such as drug release and mechanical change. In contrast, multifunctional dynamic hydrogels can adapt and respond to external stimuli and have drawn great attention in recent studies. It is realized that the integration of nanomaterials into dynamic hydrogels provides numerous functionalities for a great variety of biomedical applications that cannot be achieved by conventional hydrogels. This review article provides a comprehensive overview of recent advances in designing and fabricating dynamic hydrogels for biomedical applications. We describe different types of dynamic hydrogels based on breakable and reversible covalent bonds as well as noncovalent interactions. These mechanisms are described in detail as a useful reference for designing crosslinking strategies that strongly influence the mechanical properties of the hydrogels. We also discuss the use of dynamic hydrogels and their potential benefits. This review further explores different biomedical applications of dynamic nanocomposite hydrogels, including their use in drug delivery, tissue engineering, bioadhesives, wound healing, cancer treatment, and mechanistic study, as well as multiple-scale biomedical applications. Finally, we discuss the challenges and future perspectives of dynamic hydrogels in the field of biomedical engineering, including the integration of diverse technologies.</span></p>
Supplementary Videos for dissertation: Tunable magnetic microparticles and hydrogel biomaterials for biomedical imaging and tissue engineering applications
<p>This work contains supplementary videos of cell migration in hydrogels for the chapter 4 of the dissertation.</p>
Versatile human cardiac tissues engineered with perfusable heart extracellular microenvironment for biomedical applications
GEO Series GSE231493. Homo sapiens. 12 samples. Type: Expression profiling by high throughput sequencing.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.