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Health Sciences --- Pathology --- clinical chemistry --- laboratory medicine --- analytical techniques --- hematology --- hemostasis
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Microfluidic devices. --- Biomedical materials. --- Bioartificial materials --- Biocompatible materials --- Biomaterials (Biomedical materials) --- Hemocompatible materials --- Medical materials --- Medicine --- Biomedical engineering --- Materials --- Biocompatibility --- Prosthesis --- Fluidic devices --- Microtechnology --- Microfluidic Analytical Techniques.
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biotechnologie --- Biotechnology --- bioengineering --- Fluid mechanics --- Microfluidic Analytical Techniques --- Biomedical Research --- Molecular Biology --- Medical electronics --- Molecular biology --- Microfluidics --- Biotechnologie --- Electronique en médecine --- Biologie moléculaire --- Microfluidique --- Periodicals. --- Périodiques --- Microfluidic Analytical Techniques. --- Biotechnology. --- Biomedical Research. --- Molecular Biology. --- Medical electronics. --- Microfluidics. --- Molecular biology. --- Chemistry --- Chemical Engineering --- Molecular biochemistry --- Molecular biophysics --- Biomedical electronics --- Electronics in clinical medicine --- Electronics in medicine --- Biochemical Genetics --- Biology, Molecular --- Genetics, Biochemical --- Genetics, Molecular --- Molecular Genetics --- Biochemical Genetic --- Genetic, Biochemical --- Genetic, Molecular --- Molecular Genetic --- Experimental Medicine --- Investigational Medicine --- Investigative Medicine --- Research, Biomedical --- Research, Medical --- Medical Research --- Medicine, Experimental --- Medicine, Investigational --- Medicine, Investigative --- Biotechnologies --- Microfluidic Analysis --- Analyses, Microfluidic --- Analysis, Microfluidic --- Analytical Technique, Microfluidic --- Analytical Techniques, Microfluidic --- Microfluidic Analyses --- Microfluidic Analytical Technique --- Technique, Microfluidic Analytical --- Techniques, Microfluidic Analytical --- Biochemistry --- Biophysics --- Biomolecules --- Systems biology --- Fluidics --- Nanofluids --- Biomedical engineering --- Electronics --- Chemical engineering --- Genetic engineering --- Genetic Phenomena --- Animals, Laboratory --- Bioengineering
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psychology --- methodology --- analytical techniques --- research methods --- Psychology --- Psychology. --- Behavioral sciences --- Mental philosophy --- Mind --- Science, Mental --- Human biology --- Philosophy --- Soul --- Mental health --- Factors, Psychological --- Psychological Factors --- Psychological Side Effects --- Psychologists --- Psychosocial Factors --- Side Effects, Psychological --- Factor, Psychological --- Factor, Psychosocial --- Factors, Psychosocial --- Psychological Factor --- Psychological Side Effect --- Psychologist --- Psychosocial Factor --- Side Effect, Psychological --- Industries --- Psychologie --- Psychologie. --- psychology.
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Microfluidics or lab-on-a-chip (LOC) is an important technology suitable for numerous applications from drug delivery to tissue engineering. Microfluidic devices for biomedical applications discusses the fundamentals of microfluidics and explores in detail a wide range of medical applications.The first part of the book reviews the fundamentals of microfluidic technologies for biomedical applications with chapters focussing on the materials and methods for microfabrication, microfluidic actuation mechanisms and digital microfluidic technologies. Chapters in part two examine applications
Biosensors. --- Microfluidic devices. --- Systems on a chip -- Design. --- Microfluidic devices --- Biomedical materials --- Electrical Equipment and Supplies --- Microtechnology --- Rheology --- Microchip Analytical Procedures --- Investigative Techniques --- Technology --- Manufactured Materials --- Chemistry Techniques, Analytical --- Physics --- Miniaturization --- Technology, Industry, and Agriculture --- Equipment and Supplies --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Natural Science Disciplines --- Technology, Industry, Agriculture --- Disciplines and Occupations --- Biomedical Technology --- Microfluidics --- Microfluidic Analytical Techniques --- Micro-Electrical-Mechanical Systems --- Methods --- Mechanical Engineering --- Health & Biological Sciences --- Engineering & Applied Sciences --- Biomedical Engineering --- Mechanical Engineering - General --- Fluidic devices --- Biomedical materials.
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This book focuses on state-of-the-art microfluidic research in medical and biological applications. The top-level researchers in this research field explain carefully and clearly what can be done by using microfluidic devices. Beginners in the field —undergraduates, engineers, biologists, medical researchers—will easily learn to understand microfluidic-based medical and biological applications. Because a wide range of topics is summarized here, it also helps experts to learn more about fields outside their own specialties. The book covers many interesting subjects, including cell separation, protein crystallization, single-cell analysis, cell diagnosis, point-of-care testing, immunoassay, embyos/worms on a chip and organ-on-a-chip. Readers will be convinced that microfluidic devices have great potential for medical and biological applications.
Analytical chemistry. --- Microarrays. --- Biomedical engineering. --- Regenerative medicine. --- Tissue engineering. --- Analytical Chemistry. --- Biomedical Engineering and Bioengineering. --- Regenerative Medicine/Tissue Engineering. --- Biomedical engineering --- Regenerative medicine --- Tissue culture --- Medicine --- Regeneration (Biology) --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Analysis, Chemical --- Analytical chemistry --- Chemical analysis --- Metallurgical analysis --- Mineralogy, Determinative --- Microfluidics --- Microfluidics. --- Microfluidic Analytical Techniques. --- Lab-On-A-Chip Devices. --- Microchip Analytical Devices --- Microfluidic Devices --- Microfluidic Lab-On-A-Chip --- Microfluidic Microchips --- Nanochip Analytical Devices --- Analytical Device, Microchip --- Analytical Device, Nanochip --- Analytical Devices, Microchip --- Analytical Devices, Nanochip --- Device, Lab-On-A-Chip --- Device, Microchip Analytical --- Device, Microfluidic --- Device, Nanochip Analytical --- Devices, Lab-On-A-Chip --- Devices, Microchip Analytical --- Devices, Microfluidic --- Devices, Nanochip Analytical --- Lab On A Chip Devices --- Lab-On-A-Chip Device --- Lab-On-A-Chip, Microfluidic --- Lab-On-A-Chips, Microfluidic --- Microchip Analytical Device --- Microchip, Microfluidic --- Microchips, Microfluidic --- Microfluidic Device --- Microfluidic Lab On A Chip --- Microfluidic Lab-On-A-Chips --- Microfluidic Microchip --- Nanochip Analytical Device --- Microchip Analytical Procedures --- Microfluidic Analysis --- Analyses, Microfluidic --- Analysis, Microfluidic --- Analytical Technique, Microfluidic --- Analytical Techniques, Microfluidic --- Microfluidic Analyses --- Microfluidic Analytical Technique --- Technique, Microfluidic Analytical --- Techniques, Microfluidic Analytical --- Microfluidic --- Rheology --- Microfluidic Analytical Techniques --- Fluidics --- Nanofluids --- instrumentation --- Analytic chemistry --- Chemistry, Analytic --- Chemistry
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Natural compounds, from terrestrial and marine sources, are the result of an evolutionary process which originated in compounds with great structural diversity, multiple biological activities and miscellaneous applications. A large and very active research field is dedicated to identifying biosynthesized compounds; to improve/develop new methodologies to produce/reuse natural compounds; to assess their potential; and to understand their mechanism of action. This Special Issue brings together excellent original and review works, focused on the most recent advances related to the secondary metabolites’ composition of natural sources, and the proposal of new applications for their constituents, such as therapeutic agents, and pesticides or food ingredients.
Research & information: general --- Biology, life sciences --- heterologous expression --- Streptomyces --- secondary metabolite --- Garcinia xanthochymus --- growth inhibitory compounds --- allelopathy --- vanillic acid --- methyl phloretate --- allelopathic activity --- growth inhibitor --- phenolic compounds --- bioherbicide --- sustainable agriculture --- pulsed electric fields --- green extraction --- microalgae --- antioxidants --- pigments --- thymoquinone --- UHRF1 --- ubiquitination --- HAUSP --- tumor suppressor genes --- aaptoline B --- pyrroloquinoline --- Ag(I)-catalyzed cycloisomerization --- dopaminergic neuroprotection --- Parkinson's disease --- bioactive compounds --- cardiovascular --- nanodelivery --- bioavailability --- Ailanthus altissima --- biological properties --- analytical techniques --- potential applications --- propolis contamination --- propolis cytotoxicity --- antimicrobial activity --- antiprotozoal activity --- artepelin C --- formononetin --- pinocembrin --- quercetin --- kaempferol --- propolis extract --- Asparagopsis armata --- Rhodophyta --- GC-MS --- UHPLC-MS --- dibrominated compounds --- 1,4-dibromobuten-1-ol --- palmitic acid --- brominated phenolics --- red seaweed --- invasive seaweed --- invasive species --- flowers --- antioxidant --- microbial activity --- bioactivity --- enzyme inhibitory potential --- acetylcholinesterase --- lipase --- α-glucosidase --- heterologous expression --- Streptomyces --- secondary metabolite --- Garcinia xanthochymus --- growth inhibitory compounds --- allelopathy --- vanillic acid --- methyl phloretate --- allelopathic activity --- growth inhibitor --- phenolic compounds --- bioherbicide --- sustainable agriculture --- pulsed electric fields --- green extraction --- microalgae --- antioxidants --- pigments --- thymoquinone --- UHRF1 --- ubiquitination --- HAUSP --- tumor suppressor genes --- aaptoline B --- pyrroloquinoline --- Ag(I)-catalyzed cycloisomerization --- dopaminergic neuroprotection --- Parkinson's disease --- bioactive compounds --- cardiovascular --- nanodelivery --- bioavailability --- Ailanthus altissima --- biological properties --- analytical techniques --- potential applications --- propolis contamination --- propolis cytotoxicity --- antimicrobial activity --- antiprotozoal activity --- artepelin C --- formononetin --- pinocembrin --- quercetin --- kaempferol --- propolis extract --- Asparagopsis armata --- Rhodophyta --- GC-MS --- UHPLC-MS --- dibrominated compounds --- 1,4-dibromobuten-1-ol --- palmitic acid --- brominated phenolics --- red seaweed --- invasive seaweed --- invasive species --- flowers --- antioxidant --- microbial activity --- bioactivity --- enzyme inhibitory potential --- acetylcholinesterase --- lipase --- α-glucosidase
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Microfluidics-based biochips, also known as lab-on-a-chip or bio-MEMS, are becoming increasingly popular for DNA analysis, clinical diagnostics, and the detection/manipulation of bio-molecules. As the use of microfluidics-based biochips increases, their complexity is expected to become significant due to the need for multiple and concurrent assays on the chip, as well as more sophisticated control mechanisms for resource management. Time-to-market and fault tolerance are also expected to emerge as design considerations. As a result, current full-custom design techniques will not scale well for larger designs. There is a need to deliver the same level of CAD support to the biochip designer that the semiconductor industry now takes for granted. Design Automation Methods and Tools for Microfluidics-Based Biochips deals with all aspects of design automation for microfluidics-based biochips. Experts have contributed chapters on various aspects of biochip design automation. Topics include device modeling; adaptation of bioassays for on-chip implementations; numerical methods and simulation tools; architectural synthesis, scheduling and binding of assay operations; physical design and module placement; fault modeling and testing; reconfiguration methods.
Biochips. --- Microfluidics. --- Fluidics --- Nanofluids --- Bioreactors --- Molecular computers --- Combinatorial chemistry --- Biochips --- Microfluidics --- Computer aided design --- Microfluidic Analytical Techniques --- methods --- Electronics. --- Biomedical engineering. --- Systems engineering. --- Biotechnology. --- Hydraulic engineering. --- Electronics and Microelectronics, Instrumentation. --- Biomedical Engineering and Bioengineering. --- Circuits and Systems. --- Engineering Fluid Dynamics. --- Biological and Medical Physics, Biophysics. --- Engineering, Hydraulic --- Engineering --- Fluid mechanics --- Hydraulics --- Shore protection --- Chemical engineering --- Genetic engineering --- Engineering systems --- System engineering --- Industrial engineering --- System analysis --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Medicine --- Electrical engineering --- Physical sciences --- Design and construction --- Microelectronics. --- Electronic circuits. --- Fluid mechanics. --- Biophysics. --- Biological physics. --- Biological physics --- Biology --- Medical sciences --- Physics --- Hydromechanics --- Continuum mechanics --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electronics --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Microfluidics - methods
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Fishes --- Biochemistry --- Molecular aspects --- Physiology --- Experiments --- 597 --- 577.2 --- 577.1 --- 57.08 --- Pisces. Fishes. Ichthyology --- Molecular bases of life. Molecular biology --- Chemical bases of life. Biochemistry and bio-organic chemistry generally --- Biological techniques. Experimental methods. Equipment --- 57.08 Biological techniques. Experimental methods. Equipment --- 577.1 Chemical bases of life. Biochemistry and bio-organic chemistry generally --- 577.2 Molecular bases of life. Molecular biology --- 597 Pisces. Fishes. Ichthyology --- BIOCHEMISTRY --- FISHES --- MOLECULAR BIOLOGY --- analytical techniques --- Monograph --- Biochemistry. --- Fishes. --- Molecular biology. --- Molecular biochemistry --- Molecular biophysics --- Biophysics --- Biomolecules --- Systems biology --- Fish --- Pisces --- Aquatic animals --- Vertebrates --- Fisheries --- Fishing --- Ichthyology --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Chemistry --- Medical sciences --- Composition --- Research. --- Ichthyological research --- Research --- Fishes - Molecular aspects - Experiments --- Fishes - Physiology - Experiments --- Biochemistry - Experiments
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Natural compounds, from terrestrial and marine sources, are the result of an evolutionary process which originated in compounds with great structural diversity, multiple biological activities and miscellaneous applications. A large and very active research field is dedicated to identifying biosynthesized compounds; to improve/develop new methodologies to produce/reuse natural compounds; to assess their potential; and to understand their mechanism of action. This Special Issue brings together excellent original and review works, focused on the most recent advances related to the secondary metabolites’ composition of natural sources, and the proposal of new applications for their constituents, such as therapeutic agents, and pesticides or food ingredients.
heterologous expression --- Streptomyces --- secondary metabolite --- Garcinia xanthochymus --- growth inhibitory compounds --- allelopathy --- vanillic acid --- methyl phloretate --- allelopathic activity --- growth inhibitor --- phenolic compounds --- bioherbicide --- sustainable agriculture --- pulsed electric fields --- green extraction --- microalgae --- antioxidants --- pigments --- thymoquinone --- UHRF1 --- ubiquitination --- HAUSP --- tumor suppressor genes --- aaptoline B --- pyrroloquinoline --- Ag(I)-catalyzed cycloisomerization --- dopaminergic neuroprotection --- Parkinson’s disease --- bioactive compounds --- cardiovascular --- nanodelivery --- bioavailability --- Ailanthus altissima --- biological properties --- analytical techniques --- potential applications --- propolis contamination --- propolis cytotoxicity --- antimicrobial activity --- antiprotozoal activity --- artepelin C --- formononetin --- pinocembrin --- quercetin --- kaempferol --- propolis extract --- Asparagopsis armata --- Rhodophyta --- GC-MS --- UHPLC-MS --- dibrominated compounds --- 1,4-dibromobuten-1-ol --- palmitic acid --- brominated phenolics --- red seaweed --- invasive seaweed --- invasive species --- flowers --- antioxidant --- microbial activity --- bioactivity --- enzyme inhibitory potential --- acetylcholinesterase --- lipase --- α-glucosidase --- n/a --- Parkinson's disease
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