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Detection of microorganisms using biosensors—A smarter way towards detection techniques
Biosensors and Bioelectronics, ISSN 0956-5663, 12/2009, Volume 25, Issue 4, pp. 661 - 667
Along with useful microorganisms, there are some that cause potential damage to the animals and plants. Detection and identification of these harmful organisms...
Biodefence | Healthcare | Microorganisms | Agriculture | Biosensors | MYCOBACTERIUM-TUBERCULOSIS | LISTERIA-MONOCYTOGENES | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | ESCHERICHIA-COLI O157-H7 | NANOSCIENCE & NANOTECHNOLOGY | BACILLUS-ANTHRACIS SPORES | POLYMERASE-CHAIN-REACTION | BIOPHYSICS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ELECTROLYTE-SOLUTION | SERIES PIEZOELECTRIC SENSOR | SALMONELLA-TYPHIMURIUM | SURFACE-PLASMON RESONANCE | RAPID DETECTION | Bacteria - isolation & purification | Colony Count, Microbial - methods | Transducers | Colony Count, Microbial - instrumentation | Biosensing Techniques - instrumentation | Biosensing Techniques - methods | Equipment Design | Medical equipment | Biological weapons | Health care reform | Physiological apparatus | Methods
Biodefence | Healthcare | Microorganisms | Agriculture | Biosensors | MYCOBACTERIUM-TUBERCULOSIS | LISTERIA-MONOCYTOGENES | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | ESCHERICHIA-COLI O157-H7 | NANOSCIENCE & NANOTECHNOLOGY | BACILLUS-ANTHRACIS SPORES | POLYMERASE-CHAIN-REACTION | BIOPHYSICS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ELECTROLYTE-SOLUTION | SERIES PIEZOELECTRIC SENSOR | SALMONELLA-TYPHIMURIUM | SURFACE-PLASMON RESONANCE | RAPID DETECTION | Bacteria - isolation & purification | Colony Count, Microbial - methods | Transducers | Colony Count, Microbial - instrumentation | Biosensing Techniques - instrumentation | Biosensing Techniques - methods | Equipment Design | Medical equipment | Biological weapons | Health care reform | Physiological apparatus | Methods
Journal Article
2012, Advances in biomedical spectroscopy, ISBN 1607509660, Volume 4., xix, 293
Book
Journal of Chromatography A, ISSN 0021-9673, 11/2006, Volume 1133, Issue 1-2, pp. 1 - 12
An overview of the different detection methods available for ricin, staphylococcal enterotoxin B (SEB) and T-2 toxin is presented here. These toxins are...
T-2 toxin | Staphylococcal enterotoxin B | Review | Detection | Ricin | Methods | CHEMISTRY, ANALYTICAL | detection | ASSISTED-LASER-DESORPTION/IONIZATION | LINKED-IMMUNOSORBENT-ASSAY | ricin | methods | BIOCHEMICAL RESEARCH METHODS | TIME-OF-FLIGHT | BIOLOGICAL THREAT AGENTS | CODED AFFINITY TAGS | ELECTROSPRAY MASS-SPECTROMETRY | CAPILLARY GAS-CHROMATOGRAPHY | PERFORMANCE LIQUID-CHROMATOGRAPHY | PIEZOELECTRIC CRYSTAL IMMUNOSENSOR | TRICHOTHECENE MYCOTOXINS | review | Chemical Warfare Agents - analysis | Ricin - analysis | Bacterial Toxins - analysis | Ricin - chemistry | Immunoassay - methods | Enterotoxins - analysis | Molecular Structure | Enterotoxins - chemistry | Chemical Warfare Agents - chemistry | Mass Spectrometry - methods | Bacterial Toxins - chemistry | Biological Warfare - trends
T-2 toxin | Staphylococcal enterotoxin B | Review | Detection | Ricin | Methods | CHEMISTRY, ANALYTICAL | detection | ASSISTED-LASER-DESORPTION/IONIZATION | LINKED-IMMUNOSORBENT-ASSAY | ricin | methods | BIOCHEMICAL RESEARCH METHODS | TIME-OF-FLIGHT | BIOLOGICAL THREAT AGENTS | CODED AFFINITY TAGS | ELECTROSPRAY MASS-SPECTROMETRY | CAPILLARY GAS-CHROMATOGRAPHY | PERFORMANCE LIQUID-CHROMATOGRAPHY | PIEZOELECTRIC CRYSTAL IMMUNOSENSOR | TRICHOTHECENE MYCOTOXINS | review | Chemical Warfare Agents - analysis | Ricin - analysis | Bacterial Toxins - analysis | Ricin - chemistry | Immunoassay - methods | Enterotoxins - analysis | Molecular Structure | Enterotoxins - chemistry | Chemical Warfare Agents - chemistry | Mass Spectrometry - methods | Bacterial Toxins - chemistry | Biological Warfare - trends
Journal Article
Biosensors and Bioelectronics, ISSN 0956-5663, 11/2018, Volume 119, pp. 221 - 229
We have investigated amplification-free in situ double-stranded mutation detection in urine in the concentration range 10 M – 10 M using piezoelectric plate...
Label-free mutation detection | Isolation-free mutation detection | Amplification-free mutation detection | High-specificity mutation detection | Label-free double-stranded DNA detection | ELECTROCHEMISTRY | HYBRIDIZATION DETECTION | CHEMISTRY, ANALYTICAL | ENHANCED DETECTION | SENSITIVITY | PIEZOELECTRIC PLATE SENSORS | NANOSCIENCE & NANOTECHNOLOGY | NANOPARTICLE PROBES | LABEL-FREE DETECTION | BIOPHYSICS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | TRANSRENAL DNA | ULTRASENSITIVE DNA-DETECTION | SURFACE-PLASMON RESONANCE | ELECTRICAL DETECTION | Hepatitis B - urine | Hepatitis B - diagnosis | Point Mutation - genetics | Limit of Detection | Humans | Hepatitis B virus - genetics | Biosensing Techniques - methods | DNA, Viral - urine | Mutation - genetics | Urinalysis - methods | Genetic aspects | Sensors | Gene mutations | Analysis | DNA | amplification-free mutation detection | label-free double-stranded DNA detection | high-specificity mutation detection | label-free mutation detection | isolation-free mutation detection
Label-free mutation detection | Isolation-free mutation detection | Amplification-free mutation detection | High-specificity mutation detection | Label-free double-stranded DNA detection | ELECTROCHEMISTRY | HYBRIDIZATION DETECTION | CHEMISTRY, ANALYTICAL | ENHANCED DETECTION | SENSITIVITY | PIEZOELECTRIC PLATE SENSORS | NANOSCIENCE & NANOTECHNOLOGY | NANOPARTICLE PROBES | LABEL-FREE DETECTION | BIOPHYSICS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | TRANSRENAL DNA | ULTRASENSITIVE DNA-DETECTION | SURFACE-PLASMON RESONANCE | ELECTRICAL DETECTION | Hepatitis B - urine | Hepatitis B - diagnosis | Point Mutation - genetics | Limit of Detection | Humans | Hepatitis B virus - genetics | Biosensing Techniques - methods | DNA, Viral - urine | Mutation - genetics | Urinalysis - methods | Genetic aspects | Sensors | Gene mutations | Analysis | DNA | amplification-free mutation detection | label-free double-stranded DNA detection | high-specificity mutation detection | label-free mutation detection | isolation-free mutation detection
Journal Article
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Multiferroic composite for combined detection of static and alternating magnetic fields
Materials Letters, ISSN 0167-577X, 2012, Volume 66, Issue 1, pp. 282 - 284
Magneto-electric (ME) effects in bi-layer multiferroics consisting of single crystal hexagonal SrAl Fe O ferrites (hexaferrites, where x = 0, 0.8, 1.2) and...
Magneto-electric coupling | Piezo-electric | Magnetic hexaferrite | Multiferroic composites | Multiferroics | Multiferroic sensors | PHYSICS, APPLIED | ALLOYS | MATERIALS SCIENCE, MULTIDISCIPLINARY | Magnetic fields | Ferrites | Electric potential | Aluminum | Direct current | Doping | Voltage | Laminates
Magneto-electric coupling | Piezo-electric | Magnetic hexaferrite | Multiferroic composites | Multiferroics | Multiferroic sensors | PHYSICS, APPLIED | ALLOYS | MATERIALS SCIENCE, MULTIDISCIPLINARY | Magnetic fields | Ferrites | Electric potential | Aluminum | Direct current | Doping | Voltage | Laminates
Journal Article
Biosensors and Bioelectronics, ISSN 0956-5663, 2008, Volume 23, Issue 11, pp. 1577 - 1587
Immunosensors are biosensors that use antibodies or antigens as the specific sensing element and provide concentration-dependent signals. There is great...
Pesticide residues | Optical | Immunosensor | Piezoelectric | Electrochemical | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | FLOW-THROUGH IMMUNOSENSOR | ESCHERICHIA-COLI O157-H7 | NATURAL-WATER SAMPLES | NANOSCIENCE & NANOTECHNOLOGY | PIEZOELECTRIC IMMUNOSENSORS | IMPEDIMETRIC IMMUNOSENSOR | piezoelectric | electrochemical | DIRECT OPTICAL IMMUNOSENSOR | ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY | BIOPHYSICS | PLASMON RESONANCE IMMUNOSENSOR | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | immunosensor | pesticide residues | 2,4-DICHLOROPHENOXYACETIC ACID | SELF-ASSEMBLED MONOLAYER | optical | Immunoassay - instrumentation | Environmental Monitoring - instrumentation | Biosensing Techniques - instrumentation | Optics and Photonics - instrumentation | Pesticides - analysis | Equipment Design | Electrochemistry - instrumentation | Detectors | Electric properties | Index Medicus
Pesticide residues | Optical | Immunosensor | Piezoelectric | Electrochemical | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | FLOW-THROUGH IMMUNOSENSOR | ESCHERICHIA-COLI O157-H7 | NATURAL-WATER SAMPLES | NANOSCIENCE & NANOTECHNOLOGY | PIEZOELECTRIC IMMUNOSENSORS | IMPEDIMETRIC IMMUNOSENSOR | piezoelectric | electrochemical | DIRECT OPTICAL IMMUNOSENSOR | ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY | BIOPHYSICS | PLASMON RESONANCE IMMUNOSENSOR | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | immunosensor | pesticide residues | 2,4-DICHLOROPHENOXYACETIC ACID | SELF-ASSEMBLED MONOLAYER | optical | Immunoassay - instrumentation | Environmental Monitoring - instrumentation | Biosensing Techniques - instrumentation | Optics and Photonics - instrumentation | Pesticides - analysis | Equipment Design | Electrochemistry - instrumentation | Detectors | Electric properties | Index Medicus
Journal Article
Lab on a chip, ISSN 1473-0197, 12/2011, Volume 12, Issue 1, pp. 29 - 44
Piezoelectric microelectromechanical systems (MEMS) resonant sensors, known for their excellent mass resolution, have been studied for many applications,...
Index Medicus
Index Medicus
Journal Article
Sensors (Switzerland), ISSN 1424-8220, 11/2017, Volume 17, Issue 11, p. 2453
Tumors in the human prostate are usually stiffer compared to surrounding non-malignant glandular tissue, and tactile resonance sensors measuring stiffness can...
Resonance sensor | Tissue stiffness | Tactile sensor | Piezoelectric sensor | Prostate cancer | Prostatic Neoplasms | Animals | Vibration | Models, Biological | Swine | Male | Touch | Stiffness | Sensors | Prostate | Indentation | Tactile | Tumors | Cancer | Engineering and Technology | prostate cancer | Medical Laboratory and Measurements Technologies | Medicinsk laboratorie- och mätteknik | tactile sensor | tissue stiffness | Medicinteknik | piezoelectric sensor | Teknik och teknologier | Medical Engineering | resonance sensor
Resonance sensor | Tissue stiffness | Tactile sensor | Piezoelectric sensor | Prostate cancer | Prostatic Neoplasms | Animals | Vibration | Models, Biological | Swine | Male | Touch | Stiffness | Sensors | Prostate | Indentation | Tactile | Tumors | Cancer | Engineering and Technology | prostate cancer | Medical Laboratory and Measurements Technologies | Medicinsk laboratorie- och mätteknik | tactile sensor | tissue stiffness | Medicinteknik | piezoelectric sensor | Teknik och teknologier | Medical Engineering | resonance sensor
Journal Article
Microchimica Acta, ISSN 0026-3672, 9/2012, Volume 178, Issue 3, pp. 245 - 260
Rapid and sensitive detection of pathogen is critical for public health, defense and security. Methods such as culture and immunoassays, though highly...
Surface immobilization | Quartz crystal microbalance | Nanochemistry | Cantilever | Surface acoustic wave | Virus | Chemistry | Analytical Chemistry | Cell growth | Microengineering | Mass-sensitive | Characterization and Evaluation of Materials | Bacteria | Label-free detection | Nanotechnology | Signal amplification | Food and water | CHEMISTRY, ANALYTICAL | HEPATITIS-B-VIRUS | QUARTZ-CRYSTAL-MICROBALANCE | ESCHERICHIA-COLI O157-H7 | PIEZOELECTRIC IMMUNOSENSOR | REAL-TIME DETECTION | LABEL-FREE | SALMONELLA-TYPHIMURIUM | NUCLEIC-ACID BIOSENSOR | CANTILEVER PEMC SENSORS | SURFACE-PLASMON RESONANCE
Surface immobilization | Quartz crystal microbalance | Nanochemistry | Cantilever | Surface acoustic wave | Virus | Chemistry | Analytical Chemistry | Cell growth | Microengineering | Mass-sensitive | Characterization and Evaluation of Materials | Bacteria | Label-free detection | Nanotechnology | Signal amplification | Food and water | CHEMISTRY, ANALYTICAL | HEPATITIS-B-VIRUS | QUARTZ-CRYSTAL-MICROBALANCE | ESCHERICHIA-COLI O157-H7 | PIEZOELECTRIC IMMUNOSENSOR | REAL-TIME DETECTION | LABEL-FREE | SALMONELLA-TYPHIMURIUM | NUCLEIC-ACID BIOSENSOR | CANTILEVER PEMC SENSORS | SURFACE-PLASMON RESONANCE
Journal Article
Lab on a Chip, ISSN 1473-0197, 01/2012, Volume 12, Issue 1, pp. 29 - 44
Piezoelectric microelectromechanical systems (MEMS) resonant sensors, known for their excellent mass resolution, have been studied for many applications,...
CHEMISTRY, ANALYTICAL | FILM | BIOCHEMICAL RESEARCH METHODS | NANOSCIENCE & NANOTECHNOLOGY | MICROCANTILEVER | FBAR | OSCILLATOR | CHEMISTRY, MULTIDISCIPLINARY | LABEL-FREE DETECTION | WAVE | BULK ACOUSTIC RESONATORS | MASS SENSITIVITY | DNA | GHZ | Micro-Electrical-Mechanical Systems | Animals | Proteins - chemistry | Humans | Biosensing Techniques | Microelectromechanical systems | Antigens | Electric potential | Shear | Piezoelectricity | Acoustics | Biological | Sensors
CHEMISTRY, ANALYTICAL | FILM | BIOCHEMICAL RESEARCH METHODS | NANOSCIENCE & NANOTECHNOLOGY | MICROCANTILEVER | FBAR | OSCILLATOR | CHEMISTRY, MULTIDISCIPLINARY | LABEL-FREE DETECTION | WAVE | BULK ACOUSTIC RESONATORS | MASS SENSITIVITY | DNA | GHZ | Micro-Electrical-Mechanical Systems | Animals | Proteins - chemistry | Humans | Biosensing Techniques | Microelectromechanical systems | Antigens | Electric potential | Shear | Piezoelectricity | Acoustics | Biological | Sensors
Journal Article
Applied Microbiology and Biotechnology, ISSN 0175-7598, 6/2016, Volume 100, Issue 12, pp. 5301 - 5312
Pathogen detection is a critical point for the identification and the prevention of problems related to food safety. Failures at detecting contaminations in...
Life Sciences | Biotechnology | Salmonella | Microbiology | Microbial Genetics and Genomics | Food safety | Pathogen | Rapid detection | Immunosensor | GOLD NANOPARTICLES | PROTEIN-A | PIEZOELECTRIC IMMUNOSENSOR | TYPHIMURIUM | IMPEDIMETRIC IMMUNOSENSOR | ANTIBODY IMMOBILIZATION | BIOSENSORS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | CAPACITIVE IMMUNOSENSOR | PATHOGEN DETECTION | Foodborne Diseases - microbiology | Food Microbiology - instrumentation | Biosensing Techniques - economics | Antibodies | Food Microbiology - methods | Electrochemical Techniques - instrumentation | Salmonella - pathogenicity | Food Safety - methods | Food Contamination - prevention & control | Salmonella - isolation & purification | Biosensing Techniques - instrumentation | Biosensing Techniques - methods | Electrochemical Techniques - methods | Usage | Electrochemical analysis | Equipment and supplies | Biosensors | Identification and classification | Salmonella food poisoning | Studies | Pathogens | Antigens | Immunoglobulins | Food contamination & poisoning
Life Sciences | Biotechnology | Salmonella | Microbiology | Microbial Genetics and Genomics | Food safety | Pathogen | Rapid detection | Immunosensor | GOLD NANOPARTICLES | PROTEIN-A | PIEZOELECTRIC IMMUNOSENSOR | TYPHIMURIUM | IMPEDIMETRIC IMMUNOSENSOR | ANTIBODY IMMOBILIZATION | BIOSENSORS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | CAPACITIVE IMMUNOSENSOR | PATHOGEN DETECTION | Foodborne Diseases - microbiology | Food Microbiology - instrumentation | Biosensing Techniques - economics | Antibodies | Food Microbiology - methods | Electrochemical Techniques - instrumentation | Salmonella - pathogenicity | Food Safety - methods | Food Contamination - prevention & control | Salmonella - isolation & purification | Biosensing Techniques - instrumentation | Biosensing Techniques - methods | Electrochemical Techniques - methods | Usage | Electrochemical analysis | Equipment and supplies | Biosensors | Identification and classification | Salmonella food poisoning | Studies | Pathogens | Antigens | Immunoglobulins | Food contamination & poisoning
Journal Article
SENSORS, ISSN 1424-8220, 04/2019, Volume 19, Issue 8, p. 1769
A feature extraction methodology based on lamb waves is developed for the non-invasive detection and prediction of the gap in concrete-metal composite...
ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | piezoelectric transducers | debonding | BEHAVIOR | structural health monitoring | STRENGTH | partial least square regression | SIMULATION | gaps | FILLED STEEL TUBES | INSTRUMENTS & INSTRUMENTATION | feature extraction | concrete-filled steel tubes | COLUMNS | CFST | DEBONDING DETECTION
ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | piezoelectric transducers | debonding | BEHAVIOR | structural health monitoring | STRENGTH | partial least square regression | SIMULATION | gaps | FILLED STEEL TUBES | INSTRUMENTS & INSTRUMENTATION | feature extraction | concrete-filled steel tubes | COLUMNS | CFST | DEBONDING DETECTION
Journal Article
International Journal for Numerical Methods in Engineering, ISSN 0029-5981, 11/2013, Volume 96, Issue 6, pp. 373 - 389
SUMMARYAn iterative method to treat the inverse problem of detecting cracks and voids in two‐dimensional piezoelectric structures is proposed. The method...
inverse problem | piezoelectric ceramics | XFEM | Piezoelectric ceramics | Inverse problem | LEVEL SETS | MESHFREE METHOD | MODEL | CRACK | MATHEMATICS, INTERDISCIPLINARY APPLICATIONS | ENGINEERING, MULTIDISCIPLINARY | X-FEM | OPTIMIZATION | FINITE-ELEMENT-METHOD | FRACTURE-MECHANICS | Algorithms | Finite element method | Flaw detection | Cracks | Forward problem | Piezoelectricity | Mathematical models | Iterative methods | Defects
inverse problem | piezoelectric ceramics | XFEM | Piezoelectric ceramics | Inverse problem | LEVEL SETS | MESHFREE METHOD | MODEL | CRACK | MATHEMATICS, INTERDISCIPLINARY APPLICATIONS | ENGINEERING, MULTIDISCIPLINARY | X-FEM | OPTIMIZATION | FINITE-ELEMENT-METHOD | FRACTURE-MECHANICS | Algorithms | Finite element method | Flaw detection | Cracks | Forward problem | Piezoelectricity | Mathematical models | Iterative methods | Defects
Journal Article
Analytical Chemistry, ISSN 0003-2700, 03/2014, Volume 86, Issue 6, pp. 2799 - 2812
CHEMISTRY, ANALYTICAL | POLYMERASE-CHAIN-REACTION | ESCHERICHIA-COLI O157-H7 | IMAGING MEASUREMENTS | YERSINIA-PESTIS | PIEZOELECTRIC IMMUNOSENSOR | VIBRIO-CHOLERAE O1 | PROTEIN ARRAYS | LABEL-FREE DETECTION | RAPID DETECTION | LIVING CELLS | Animals | Surface Plasmon Resonance - methods | Escherichia coli - isolation & purification | Salmonella - isolation & purification | Salmonella - metabolism | Escherichia coli - metabolism
Journal Article
Talanta, ISSN 0039-9140, 10/2013, Volume 115, pp. 761 - 767
The accidental contamination of in raw and processed foods is a major problem for the food industry worldwide. At present many of the currently used methods...
Bacteria detection | Quartz crystal microbalance (QCM) | Salmonella | Food monitoring | Nanoparticle | Immunosensor | CHEMISTRY, ANALYTICAL | ESCHERICHIA-COLI O157-H7 | PIEZOELECTRIC IMMUNOSENSOR | SENSOR | ANTIBODY IMMOBILIZATION | FILMS | SURFACE-PLASMON RESONANCE | BIOSENSOR | SELF-ASSEMBLED MONOLAYER | RAPID DETECTION | FOOD | Antibodies, Immobilized - chemistry | Gold - chemistry | Microfluidic Analytical Techniques | Immunoassay | Limit of Detection | Antibodies, Immobilized - immunology | Antibodies, Bacterial - chemistry | Food Contamination - analysis | Quartz Crystal Microbalance Techniques | Immunoglobulin G - chemistry | Metal Nanoparticles - chemistry | Salmonella typhimurium - isolation & purification | Animals | Immunoglobulin G - immunology | Chickens | Biosensing Techniques | Antibodies, Bacterial - immunology | Mice | Antibodies, Monoclonal - chemistry | Antibodies, Monoclonal - immunology | Meat - microbiology | Nanoparticles | Immunoglobulins | Usage | Salmonella food poisoning | Microfluidics | Microorganisms | Antibodies | Bacteria | Foods | Sensors | Assaying | Real time
Bacteria detection | Quartz crystal microbalance (QCM) | Salmonella | Food monitoring | Nanoparticle | Immunosensor | CHEMISTRY, ANALYTICAL | ESCHERICHIA-COLI O157-H7 | PIEZOELECTRIC IMMUNOSENSOR | SENSOR | ANTIBODY IMMOBILIZATION | FILMS | SURFACE-PLASMON RESONANCE | BIOSENSOR | SELF-ASSEMBLED MONOLAYER | RAPID DETECTION | FOOD | Antibodies, Immobilized - chemistry | Gold - chemistry | Microfluidic Analytical Techniques | Immunoassay | Limit of Detection | Antibodies, Immobilized - immunology | Antibodies, Bacterial - chemistry | Food Contamination - analysis | Quartz Crystal Microbalance Techniques | Immunoglobulin G - chemistry | Metal Nanoparticles - chemistry | Salmonella typhimurium - isolation & purification | Animals | Immunoglobulin G - immunology | Chickens | Biosensing Techniques | Antibodies, Bacterial - immunology | Mice | Antibodies, Monoclonal - chemistry | Antibodies, Monoclonal - immunology | Meat - microbiology | Nanoparticles | Immunoglobulins | Usage | Salmonella food poisoning | Microfluidics | Microorganisms | Antibodies | Bacteria | Foods | Sensors | Assaying | Real time
Journal Article