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Energy efficient routing algorithm with mobile sink support for wireless sensor networks
Sensors (Switzerland), ISSN 1424-8220, 04/2019, Volume 19, Issue 7, p. 1494
Recently, wireless sensor network (WSN) has drawn wide attention. It can be viewed as a network with lots of sensors that are autonomously organized and...
Energy efficiency | Mobile sink | Clustering | Moving trajectory scheduling | Wireless sensor network (WSN) | mobile sink | clustering | moving trajectory scheduling | energy efficiency
Energy efficiency | Mobile sink | Clustering | Moving trajectory scheduling | Wireless sensor network (WSN) | mobile sink | clustering | moving trajectory scheduling | energy efficiency
Journal Article
1994, Charyo chʻongsŏ, Volume che 18-chip, ii, 520
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2008, Hŭimang Chejakso uri kangsan p'urŭge p'urŭge ch'ongsŏ, ISBN 9788990816764, Volume 9, 239
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Diabetes, ISSN 0012-1797, 06/2019, Volume 68, Issue Supplement 1, p. 2029
Journal Article
Metallurgical and Materials Transactions A, ISSN 1073-5623, 11/2019
Journal Article
Sensors (Switzerland), ISSN 1424-8220, 05/2019, Volume 19, Issue 10, p. 2395
Wireless body area networks (WBANs) are expected to play a vital role in the field of patient-health monitoring shortly. They provide a convenient way to...
Digital signature | Wireless body area network | Blockchain | Data storage | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | data storage | INSTRUMENTS & INSTRUMENTATION | digital signature | AUTHENTICATION | blockchain | SECURITY | RANK | wireless body area network | SENSOR NETWORKS | Access control | Energy consumption | Electronic devices | Personal health | Science | Body area networks | Internet of Things | Insulin | Privacy | Information science | Architectural engineering | Wireless communications | Wireless networks | Network topologies | Medical electronics | Sensors | Cryptography | Digital signatures
Digital signature | Wireless body area network | Blockchain | Data storage | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | data storage | INSTRUMENTS & INSTRUMENTATION | digital signature | AUTHENTICATION | blockchain | SECURITY | RANK | wireless body area network | SENSOR NETWORKS | Access control | Energy consumption | Electronic devices | Personal health | Science | Body area networks | Internet of Things | Insulin | Privacy | Information science | Architectural engineering | Wireless communications | Wireless networks | Network topologies | Medical electronics | Sensors | Cryptography | Digital signatures
Journal Article
Molecular Nutrition & Food Research, ISSN 1613-4125, 09/2008, Volume 52, Issue 9, pp. 995 - 1004
We investigated the effect of curcumin on insulin resistance and glucose homeostasis in male C57BL/KsJ‐db/db mice and their age‐matched lean non‐diabetic db/+...
Type 2 diabetes | Insulin resistance | Curcumin | Antioxidant | Glucose homeostasis | RAT-LIVER | LEPTIN | antioxidant | HEPATIC GLUCOSE | ACID | LIPID-PEROXIDATION | FOOD SCIENCE & TECHNOLOGY | ANTIOXIDANT ENZYMES | GLUCOKINASE ACTIVITY | glucose homeostasis | type 2 diabetes | METABOLISM | SPECTROPHOTOMETRIC ASSAY | RESISTANCE | insulin resistance | curcumin | Diabetes Mellitus - blood | Glycated Hemoglobin A - metabolism | Glycated Hemoglobin A - drug effects | Lipoprotein Lipase - drug effects | Homeostasis | Male | Curcumin - administration & dosage | Insulin - blood | Muscle, Skeletal - drug effects | Lipoprotein Lipase - metabolism | Glucose Tolerance Test | Muscle, Skeletal - enzymology | Mice, Inbred C57BL | Curcumin - pharmacology | Diabetes Mellitus - drug therapy | Insulin Resistance | Mice, Inbred Strains | Blood Glucose - drug effects | Animals | Glucose - metabolism | Adipose Tissue - enzymology | Mice | Blood Glucose - metabolism | Adipose Tissue - drug effects | Dietary Supplements
Type 2 diabetes | Insulin resistance | Curcumin | Antioxidant | Glucose homeostasis | RAT-LIVER | LEPTIN | antioxidant | HEPATIC GLUCOSE | ACID | LIPID-PEROXIDATION | FOOD SCIENCE & TECHNOLOGY | ANTIOXIDANT ENZYMES | GLUCOKINASE ACTIVITY | glucose homeostasis | type 2 diabetes | METABOLISM | SPECTROPHOTOMETRIC ASSAY | RESISTANCE | insulin resistance | curcumin | Diabetes Mellitus - blood | Glycated Hemoglobin A - metabolism | Glycated Hemoglobin A - drug effects | Lipoprotein Lipase - drug effects | Homeostasis | Male | Curcumin - administration & dosage | Insulin - blood | Muscle, Skeletal - drug effects | Lipoprotein Lipase - metabolism | Glucose Tolerance Test | Muscle, Skeletal - enzymology | Mice, Inbred C57BL | Curcumin - pharmacology | Diabetes Mellitus - drug therapy | Insulin Resistance | Mice, Inbred Strains | Blood Glucose - drug effects | Animals | Glucose - metabolism | Adipose Tissue - enzymology | Mice | Blood Glucose - metabolism | Adipose Tissue - drug effects | Dietary Supplements
Journal Article
Telecommunications Policy, ISSN 0308-5961, 08/2019, p. 101855
Journal Article
Scientific Reports, ISSN 2045-2322, 12/2018, Volume 8, Issue 1, pp. 13584 - 8
Polyene macrolides such as nystatin A1 and amphotericin B belong to a large family of very valuable antifungal polyketide compounds typically produced by soil...
NOURSEI | MACROLIDE BIOSYNTHESIS | GENE | MULTIDISCIPLINARY SCIENCES | POLYKETIDE | WBLA | RESISTANCE | CHEMISTRY | AMPHOTERICIN-B | ENGINEERED BIOSYNTHESIS | STREPTOMYCES-NODOSUS | Polyketide synthase | Antifungal activity | Disaccharides | Antibiotics | Amphotericin B | Toxicity | Amino acids | Actinomycetes | NADP | Reductase | Nystatin
NOURSEI | MACROLIDE BIOSYNTHESIS | GENE | MULTIDISCIPLINARY SCIENCES | POLYKETIDE | WBLA | RESISTANCE | CHEMISTRY | AMPHOTERICIN-B | ENGINEERED BIOSYNTHESIS | STREPTOMYCES-NODOSUS | Polyketide synthase | Antifungal activity | Disaccharides | Antibiotics | Amphotericin B | Toxicity | Amino acids | Actinomycetes | NADP | Reductase | Nystatin
Journal Article
Advanced Functional Materials, ISSN 1616-301X, 07/2019, Volume 29, Issue 29, pp. 1900495 - n/a
The intraperitoneal (IP) cavity is the largest fluid‐filled space in the body and contains important organs. Although peritoneal fluid from the abdominal...
patch | peritoneum | cancer | adhesive | anastomosis | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | CYTOREDUCTIVE SURGERY | STATISTICS | PERITONEAL CARCINOMATOSIS | MATERIALS SCIENCE, MULTIDISCIPLINARY | ANASTOMOTIC LEAKAGE | CHEMISTRY, PHYSICAL | CURATIVE RESECTION | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | TISSUE ADHESIVES | CHITOSAN HYDROGELS | COLORECTAL-CANCER | CHEMISTRY | POSTOPERATIVE RADIATION-THERAPY | Biological products | Leakage | Surgical implants | Biomedical materials | Adhesives | Surgery | Bursting pressure | Seals | Patches (structures) | Organs | Implantation
patch | peritoneum | cancer | adhesive | anastomosis | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | CYTOREDUCTIVE SURGERY | STATISTICS | PERITONEAL CARCINOMATOSIS | MATERIALS SCIENCE, MULTIDISCIPLINARY | ANASTOMOTIC LEAKAGE | CHEMISTRY, PHYSICAL | CURATIVE RESECTION | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | TISSUE ADHESIVES | CHITOSAN HYDROGELS | COLORECTAL-CANCER | CHEMISTRY | POSTOPERATIVE RADIATION-THERAPY | Biological products | Leakage | Surgical implants | Biomedical materials | Adhesives | Surgery | Bursting pressure | Seals | Patches (structures) | Organs | Implantation
Journal Article
Sensors (Switzerland), ISSN 1424-8220, 02/2018, Volume 18, Issue 2, p. 426
Faradaic electrochemical impedance spectroscopy (f-EIS) in the presence of redox reagent, e.g., [Fe(CN)(6)](3/4), is widely used in biosensors owing to its...
Redox reagent | Fe(CN) | Amyloid beta | High sensitivity | Faradaic electrochemical impedance spectroscopy | Biosensor | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | biosensor | CONSTANT-PHASE-ELEMENT | amyloid beta | CAPACITANCE | [Fe(CN)](3-/4-) | redox reagent | faradaic electrochemical impedance spectroscopy | high sensitivity | INSTRUMENTS & INSTRUMENTATION | BIOSENSORS | ELECTRODE | Microelectrodes | Sensitivity analysis | Spectrum analysis | Reagents | Agglomeration | Sensors | Biosensors | Buffers | Equivalent circuits | Electrochemical impedance spectroscopy | [Fe(CN)6]3−/4
Redox reagent | Fe(CN) | Amyloid beta | High sensitivity | Faradaic electrochemical impedance spectroscopy | Biosensor | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | biosensor | CONSTANT-PHASE-ELEMENT | amyloid beta | CAPACITANCE | [Fe(CN)](3-/4-) | redox reagent | faradaic electrochemical impedance spectroscopy | high sensitivity | INSTRUMENTS & INSTRUMENTATION | BIOSENSORS | ELECTRODE | Microelectrodes | Sensitivity analysis | Spectrum analysis | Reagents | Agglomeration | Sensors | Biosensors | Buffers | Equivalent circuits | Electrochemical impedance spectroscopy | [Fe(CN)6]3−/4
Journal Article
Biotechnology Letters, ISSN 0141-5492, 11/2019, Volume 41, Issue 11, pp. 1255 - 1263
To examine the effects of suramin in CHO cell cultures in terms of the cell culture performance and quality of the Fc-fusion protein.Suramin had positive...
Life Sciences | Biochemistry, general | Biotechnology | Suramin | Microbiology | Fc-fusion protein | Applied Microbiology | Glycosylation | Sialylation | Chinese hamster ovary cells | Productivity | Cell culture | Media (culture) | Cultures | Nucleotides | Cell fusion | Cell density | Proteins | Fc receptors | Protein folding | Inhibition | Fusion protein | Protein interaction | Viability | Sugar | Apoptosis
Life Sciences | Biochemistry, general | Biotechnology | Suramin | Microbiology | Fc-fusion protein | Applied Microbiology | Glycosylation | Sialylation | Chinese hamster ovary cells | Productivity | Cell culture | Media (culture) | Cultures | Nucleotides | Cell fusion | Cell density | Proteins | Fc receptors | Protein folding | Inhibition | Fusion protein | Protein interaction | Viability | Sugar | Apoptosis
Journal Article
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