scholarly article | Q13442814 |
P50 | author | Kyung-Duk Zoh | Q77789248 |
P2093 | author name string | GwangPyo Ko | |
JungEun Lee | |||
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Widespread environmental contamination with Norwalk-like viruses (NLV) detected in a prolonged hotel outbreak of gastroenteritis | Q57106994 | ||
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The survival of enteric viruses in the water environment | Q71782729 | ||
P433 | issue | 7 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | norovirus | Q1142751 |
disinfection | Q24887418 | ||
P304 | page(s) | 2111-2117 | |
P577 | publication date | 2008-02-01 | |
P1433 | published in | Applied and Environmental Microbiology | Q4781593 |
P1476 | title | Inactivation and UV disinfection of murine norovirus with TiO2 under various environmental conditions | |
P478 | volume | 74 |
Q33646136 | A broadly reactive one-step SYBR Green I real-time RT-PCR assay for rapid detection of murine norovirus |
Q36428351 | Age-associated variability in susceptibility of Swiss Webster mice to MPV and other excluded murine pathogens |
Q36903219 | Antiviral effect of vitamin A on norovirus infection via modulation of the gut microbiome |
Q37712926 | Antiviral properties of silver nanoparticles on a magnetic hybrid colloid |
Q34261176 | Application of long-range and binding reverse transcription-quantitative PCR to indicate the viral integrities of noroviruses. |
Q33649115 | Characterization of ozone disinfection of murine norovirus |
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Q59354811 | Comparison of Swab Sampling Methods for Norovirus Recovery on Surfaces |
Q26853341 | Critical review of norovirus surrogates in food safety research: rationale for considering volunteer studies |
Q38738062 | Curcumin Shows Antiviral Properties against Norovirus |
Q43310544 | Detection and hazard assessment of pathogenic microorganisms in medical wastes |
Q39943742 | Development and application of a broadly reactive real-time reverse transcription-PCR assay for detection of murine noroviruses |
Q39720470 | Disinfection kinetics of murine norovirus using chlorine and chlorine dioxide |
Q41589225 | Effect of UV light on the inactivation of recombinant human adenovirus and murine norovirus seeded in seawater in shellfish depuration tanks. |
Q39764684 | Effect of chitosan on the infectivity of murine norovirus, feline calicivirus, and bacteriophage MS2. |
Q33670977 | Effect of murine norovirus infection on mouse parvovirus infection |
Q45074734 | Effect of wash treatments on reducing human norovirus on iceberg lettuce and perilla leaf |
Q42939040 | Effectiveness of liquid soap and hand sanitizer against Norwalk virus on contaminated hands |
Q51065561 | Effects of chlorine and chlorine dioxide on human rotavirus infectivity and genome stability. |
Q41841523 | Efficacy and mechanisms of murine norovirus inhibition by pulsed-light technology. |
Q38756816 | Elimination of viruses from domestic wastewater: requirements and technologies |
Q30240798 | Environmental indicators for human norovirus outbreaks |
Q33743079 | Environmental transmission of human noroviruses in shellfish waters. |
Q39173747 | Evaluating ultraviolet sensitivity of adventitious agents in biopharmaceutical manufacturing. |
Q42912168 | Evaluation of Various Methods for Recovering Human Norovirus and Murine Norovirus from Vegetables and Ham |
Q45338398 | Evaluation of murine norovirus as a surrogate for human norovirus and hepatitis A virus in heat inactivation studies |
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Q40126226 | Inactivation of Norovirus by Lemongrass Essential Oil Using a Norovirus Surrogate System |
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Q41816636 | Inactivation of caliciviruses |
Q41865550 | Inactivation of murine norovirus 1, coliphage phiX174, and Bacteroides [corrected] fragilis phage B40-8 on surfaces and fresh-cut iceberg lettuce by hydrogen peroxide and UV light |
Q33479320 | Inactivation of murine norovirus by chemical biocides on stainless steel |
Q38269752 | Inactivation of norovirus and surrogates by natural phytochemicals and bioactive substances |
Q33814108 | Inactivation of the Tulane virus, a novel surrogate for the human norovirus |
Q99406445 | Lightweight UV-C disinfection system |
Q42282676 | Norovirus and MS2 inactivation kinetics of UV-A and UV-B with and without TiO2. |
Q39516388 | Occurrence and reduction of human viruses, F-specific RNA coliphage genogroups and microbial indicators at a full-scale wastewater treatment plant in Japan |
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Q38634144 | Recovery optimization and survival of human norovirus surrogates, feline calicivirus and murine norovirus on carpet |
Q38382099 | Removal characteristics and fluctuation of norovirus in a pilot-plant by an ultrafiltration membrane for the reclamation of treated sewage |
Q36361849 | Residual viral and bacterial contamination of surfaces after cleaning and disinfection |
Q39281207 | Stability of human enteric viruses in seawater samples from mollusc depuration tanks coupled with ultraviolet irradiation. |
Q99617725 | Survival and inactivation of human norovirus GII.4 Sydney on commonly touched airplane cabin surfaces |
Q42264127 | The effectiveness of domestic cook on inactivation of murine norovirus in experimentally infected Manila clams (Ruditapes philippinarum). |
Q89182199 | Titanium Dioxide Nanoparticles Evoke Proinflammatory Response during Murine Norovirus Infection Despite Having Minimal Effects on Virus Replication |
Q57299645 | UV inactivation of human infectious viruses at two full-scale wastewater treatment plants in Canada |
Q42261031 | Ultraviolet Light Inactivation of Murine Norovirus and Human Norovirus GII: PCR May Overestimate the Persistence of Noroviruses Even When Combined with Pre-PCR Treatments |
Q54334637 | Using propidium monoazide to distinguish between viable and nonviable bacteria, MS2 and murine norovirus. |
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