scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1083830914 |
P356 | DOI | 10.1186/S40168-017-0235-0 |
P8608 | Fatcat ID | release_tuvc7n3nhbc4xjc2w3con466qe |
P932 | PMC publication ID | 5312438 |
P698 | PubMed publication ID | 28202080 |
P50 | author | Emmanuel F Mongodin | Q56787109 |
Prachi Kulkarni | Q58074272 | ||
Mihai Pop | Q102229170 | ||
P2093 | author name string | Molly C Reid | |
Amy R Sapkota | |||
Pamela I Clark | |||
Raul Cruz-Cano | |||
Stephanie S Buehler | |||
Lauren E Hittle | |||
Joseph N Paulson | |||
Jessica Chopyk | |||
Suhana Chattopadhyay | |||
Eoghan M Smyth | |||
Kelsey R Babik | |||
Emma Claye | |||
P2860 | cites work | A Mathematical Theory of Communication | Q724029 |
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Radioresistance of Deinococcus radiodurans: functions necessary to survive ionizing radiation are also necessary to survive prolonged desiccation | Q24684819 | ||
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Mentholated cigarette smoking inhibits nicotine metabolism | Q28256536 | ||
An increasing threat in hospitals: multidrug-resistant Acinetobacter baumannii | Q28257612 | ||
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Bacterial species diversity in cigarettes linked to an investigation of severe pneumonitis in U.S. Military personnel deployed in operation iraqi freedom | Q30991677 | ||
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Human pathogens abundant in the bacterial metagenome of cigarettes | Q33523227 | ||
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The adult cystic fibrosis airway microbiota is stable over time and infection type, and highly resilient to antibiotic treatment of exacerbations | Q34437958 | ||
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Deinococcus geothermalis sp. nov. and Deinococcus murrayi sp. nov., two extremely radiation-resistant and slightly thermophilic species from hot springs. | Q34442949 | ||
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Custom Mentholation of Commercial Cigarettes for Research Purposes | Q35002309 | ||
Nosocomial bacteremia due to Acinetobacter baumannii: epidemiology, clinical features and treatment. | Q35005719 | ||
Epidemiology of menthol cigarette use in the United States | Q35009956 | ||
Culture-independent evaluation of the appendix and rectum microbiomes in children with and without appendicitis | Q35156133 | ||
Application, function, and effects of menthol in cigarettes: a survey of tobacco industry documents | Q35675031 | ||
The African Americanization of menthol cigarette use in the United States | Q35675033 | ||
Role of mentholated cigarettes in increased nicotine dependence and greater risk of tobacco-attributable disease | Q35802954 | ||
The epidemiology and control of Acinetobacter baumannii in health care facilities | Q36382140 | ||
Recovery of Mycobacterium avium from cigarettes | Q36525509 | ||
Menthol Content in US Marketed Cigarettes | Q36563761 | ||
Tobacco use increases susceptibility to bacterial infection | Q37066146 | ||
Effects of menthol on tobacco smoke exposure, nicotine dependence, and NNAL glucuronidation | Q37178887 | ||
Biotransformation of nicotine by microorganism: the case of Pseudomonas spp. | Q37678938 | ||
The marketing of menthol cigarettes in the United States: populations, messages, and channels | Q38553390 | ||
Chemical composition of tobacco and tobacco smoke | Q39969362 | ||
Analysis of the pathogenic potential of nosocomial Pseudomonas putida strains. | Q40994914 | ||
Effect of menthol on cold receptor activity. Analysis of receptor processes | Q41477875 | ||
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Identification of bacterial and fungal components in tobacco and tobacco smoke | Q43008480 | ||
Allergenic fungi and actinomycetes in smoking materials and their health implications | Q43021037 | ||
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VIM-2-producing Pseudomonas putida, Buenos Aires. | Q43071334 | ||
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Menthol cigarettes and risk of lung cancer | Q44595113 | ||
Mentholated Cigarette Use and Lung Cancer | Q46231606 | ||
Effect of cigarette menthol content on mainstream smoke emissions | Q46339469 | ||
Killing effect of peppermint vapor against pink-slime forming microorganisms | Q46706584 | ||
Impact of cigarette smoke on clearance and inflammation after Pseudomonas aeruginosa infection | Q47939820 | ||
Characterization of environmentally friendly nicotine degradation by Pseudomonas putida biotype A strain S16. | Q48079880 | ||
Association of red complex, A. actinomycetemcomitans and non-oral bacteria with periodontal diseases. | Q50542788 | ||
Pseudomonas aeruginosa in chronic obstructive pulmonary disease. | Q54550554 | ||
Effect of menthol cigarettes on biochemical markers of smoke exposure among black and white smokers | Q71772357 | ||
Clinical spectrum of Pseudomonas putida infection | Q71877955 | ||
Mentholated cigarettes decrease puff volume of smoke and increase carbon monoxide absorption | Q72836115 | ||
Tobacco use among U.S. racial/ethnic minority groups--African Americans, American Indians and Alaska Natives, Asian Americans and Pacific Islanders, Hispanics. A Report of the Surgeon General. Executive summary | Q77449741 | ||
Evaluation of the antioxidant effects of carotenoids from Deinococcus radiodurans through targeted mutagenesis, chemiluminescence, and DNA damage analyses | Q79972614 | ||
Tobacco flakes on cigarette filters grow bacteria: a potential health risk to the smoker? | Q81924438 | ||
P4510 | describes a project that uses | ggplot2 | Q326489 |
RStudio | Q4798119 | ||
phyloseq | Q106407822 | ||
DESeq2 | Q113018293 | ||
P433 | issue | 1 | |
P304 | page(s) | 22 | |
P577 | publication date | 2017-02-15 | |
P1433 | published in | Microbiome | Q27725102 |
P1476 | title | Mentholation affects the cigarette microbiota by selecting for bacteria resistant to harsh environmental conditions and selecting against potential bacterial pathogens | |
P478 | volume | 5 |
Q54217629 | Agricultural Freshwater Pond Supports Diverse and Dynamic Bacterial and Viral Populations. |
Q44168611 | Changes in the microbiota cause genetically modified Anopheles to spread in a population. |
Q91281789 | Comparative metagenomic analysis of microbial taxonomic and functional variations in untreated surface and reclaimed waters used in irrigation applications |
Q58707305 | Interaction between the microbiome and TP53 in human lung cancer |
Q64115384 | Little cigars and cigarillos harbor diverse bacterial communities that differ between the tobacco and the wrapper |
Q98162370 | Metabolically-active bacteria in reclaimed water and ponds revealed using bromodeoxyuridine DNA labeling coupled with 16S rRNA and shotgun sequencing |
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