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Volumn 11, Issue 3, 2012, Pages 2780-2789
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Neural-endocrine mechanisms of respiratory syncytial virus-associated asthma in a rat model.
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Author keywords
[No Author keywords available]
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Indexed keywords
ADRENALIN;
MESSENGER RNA;
NERVE GROWTH FACTOR;
NORADRENALIN;
SYNAPTOPHYSIN;
ADRENAL MEDULLA;
ANIMAL;
ARTICLE;
ASTHMA;
BRONCHUS HYPERREACTIVITY;
DISEASE MODEL;
ENDOCRINE SYSTEM;
GENE EXPRESSION REGULATION;
GENETICS;
HELA CELL;
HUMAN;
IMMUNOHISTOCHEMISTRY;
IN SITU HYBRIDIZATION;
LUNG;
METABOLISM;
NERVOUS SYSTEM;
PATHOLOGY;
PATHOPHYSIOLOGY;
PHYSIOLOGY;
RAT;
RESPIRATORY SYNCYTIAL PNEUMOVIRUS;
RESPIRATORY SYNCYTIAL VIRUS INFECTION;
REVERSE TRANSCRIPTION POLYMERASE CHAIN REACTION;
SPRAGUE DAWLEY RAT;
ULTRASTRUCTURE;
VIROLOGY;
ADRENAL MEDULLA;
ANIMALS;
ASTHMA;
BRONCHIAL HYPERREACTIVITY;
DISEASE MODELS, ANIMAL;
ENDOCRINE SYSTEM;
EPINEPHRINE;
GENE EXPRESSION REGULATION;
HELA CELLS;
HUMANS;
IMMUNOHISTOCHEMISTRY;
IN SITU HYBRIDIZATION;
LUNG;
NERVE GROWTH FACTOR;
NERVOUS SYSTEM;
NOREPINEPHRINE;
RATS;
RATS, SPRAGUE-DAWLEY;
RESPIRATORY SYNCYTIAL VIRUS INFECTIONS;
RESPIRATORY SYNCYTIAL VIRUSES;
REVERSE TRANSCRIPTASE POLYMERASE CHAIN REACTION;
RNA, MESSENGER;
SYNAPTOPHYSIN;
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EID: 84872012440
PISSN: None
EISSN: 16765680
Source Type: Journal
DOI: 10.4238/2012.August.24.3 Document Type: Article |
Times cited : (9)
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References (0)
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