Developed by Shray Alag, The Harker School
Sections: Correlations,
Clinical Trials, and HPO
Navigate: Clinical Trials and HPO
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drug840 | Canine odor detection of Volatile Organic Compounds Wiki | 0.71 |
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Navigate: Correlations HPO
There are 2 clinical trials
The study of volatile organic compounds (VOCs) detected in exhaled air is an innovative research area for respiratory diseases. This analysis can be done by the technique of electronic nose, simpler and faster, which provides an idea of the general profile of the VOCs without identifying them. The VOCs in exhaled air in patients hospitalized for COVID-19 infection are analysed in this study, using electronic noses.
Description: Comparison of variation of profiles of Volatile Organic Compounds in exhaled air from electronic noses (a set of sensors interacting with the VOCs exhaled. The analysis of the generated signal (resistance or load variations) is characteristic of the composition of VOCs), between patients who improve and patients who get worse during their hospitalisation for COVID-19 infection
Measure: Profiles of volatile organic compounds (VOCs) in exhaled air between 2 health conditions Time: 1 dayDescription: Comparison of variation of profiles of Volatile Organic Compounds in exhaled air from electronic noses (a set of sensors interacting with the VOCs exhaled. The analysis of the generated signal (resistance or load variations) is characteristic of the composition of VOCs), between the start and the discharge to the hospital in patients infecting and recovering from COVID-19.
Measure: Profiles of volatile organic compounds (VOCs) in exhaled air on 1 health condition Time: 2 weeksDescription: Comparison of variation of profiles of Volatile Organic Compounds in exhaled air from electronic noses (a set of sensors interacting with the VOCs exhaled. The analysis of the generated signal (resistance or load variations) is characteristic of the composition of VOCs), between the hospitalisation period and a post-hospitalisation follow-up consultation in patients infected by COVID-19 and recovered.
Measure: Profiles of volatile organic compounds (VOCs) in exhaled air between 2 periods Time: 4 monthsIn the context of the actual pandemia of the Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) which requires a better diagnostic strategy for the management of patients. The study of volatile organic compounds (VOC) detected in exhaled air or in sweat, is an innovative research area for respiratory diseases. The analysis of VOC can be done either by the technique of the mass spectrometry which allows the identification of each VOC in the exhaled air or by the technique of electronic nose, simpler and faster, which provides an idea of the general profile of the VOC without identifying them. The VOC have shown their interest in some situations, such as diagnostic or prognostic tool in patients followed for thoracic tumorous pathology or bronchial or pulmonary vascular diseases. Moreover, it has recently been shown that properly trained dogs would be able to detect an olfactory signature of SARS-CoV-2 infection with a specificity greater than 90%; this olfactory signature corresponds to VOCs detectable by the flair of dogs (Nosaïs-Covid19 study). Validation of the diagnostic value of VOC analyzes by non-invasive and rapid methods (electronic nose analysis or mass spectrometry; detection by the scent of dogs) for the rapid detection and early diagnosis of a SARS-CoV-2 infection warrants the performance of this clinical study.
Description: Comparison of variation of Volatile Organic Compound (VOC) profiles in exhaled air of patients between patients with symptoms suggestive of COVID and infection confirmed by Reverse Transcriptase Polymerase Chain Reaction (RT-PCR) and those whose infection is ruled out based on the negativity of RT-PCR and clinical data
Measure: Validate the interest of VOCs analyzed by electronic noses and / or mass spectrometry for the diagnosis of a COVID-19 infection Time: 1 dayDescription: The equivalences and differences in nature of VOCs associated with infection with SARS-CoV-2 between exhaled air and sweat.
Measure: Identify the nature of VOCs associated with infection by SARS-CoV-2 by mass spectrometry in exhaled air and in sweat Time: 1 dayDescription: Proportion of success in detecting samples from patients with symptoms suggestive of COVID and infection confirmed by PCR.
Measure: Assessment of the specificity and sensitivity of canine olfactory detection of COVs associated with infection by SARS-CoV-2 (COVID-19) Time: 1 dayAlphabetical listing of all HPO terms. Navigate: Correlations Clinical Trials
Data processed on September 26, 2020.
An HTML report was created for each of the unique drugs, MeSH, and HPO terms associated with COVID-19 clinical trials. Each report contains a list of either the drug, the MeSH terms, or the HPO terms. All of the terms in a category are displayed on the left-hand side of the report to enable easy navigation, and the reports contain a list of correlated drugs, MeSH, and HPO terms. Further, all reports contain the details of the clinical trials in which the term is referenced. Every clinical trial report shows the mapped HPO and MeSH terms, which are also hyperlinked. Related HPO terms, with their associated genes, protein mutations, and SNPs are also referenced in the report.
Drug Reports MeSH Reports HPO Reports