COVID-19 Clinical Trial
— COVID-19Official title:
A Prospective, Non-interventional, Observational Clinical Validation Study to Analytically Validate the A&M Breathalyzer PROTECT Kiosk Breath Capture System.
The primary objective of this effort will be to optimize and operationalize innovative passive surveillance systems and in parallel, the effort will identify, evaluate, and transition groundbreaking new technologies in diagnostics for operationalization. To meet the objective and execute the deliverables for this program of effort, the A&M Breathalyzer PROTECT Kiosk will be tested, modified and validated at Brooke Army Medical Center (BAMC). The collaborative efforts between the PI, Dr. Michael Morris at BAMC and Co-Investigator Dr. Tony Yuan at USU- Center for Biotechnology (4D Bio3) will assess the passive detection technology and provide a capability survey of use-case scenarios for different operational settings. Goals: 1. Optimization and operationalize the A&M Breathalyzer PROTECT Kiosk, portable mass spectrometer (MS) Detector for Deployment in Military Operational Medicine Environments. The Breathalyzer will be deployed to BAMC to test its detection capabilities of COVID-19 among symptomatic and asymptomatic COVID-19 carrier vs. those not infected compared to gold standard RT-PCR. 2. Evaluate the passive sensing, breath capture system, built within the A&M Breathalyzer PROTECT Kiosk. The conversion of the active breath capture system, currently requires a straw that the subject breaths into, where then a series of sensors built in the Breathalyzer would automatically sample the exhaled breath within proximity for recent COVID-19 exposure. This task would conclude with a set of sensors and sensor inputs that would be analyzed by the Atomic AI platform built in the device. Field testing at BAMC is planned to determine the level of detection and discrimination for sensor combinations to SARS-CoV2 components and biomarkers detected. This testing would update the Atomic AI algorithm, within the device, to understand the accuracy of positive detection and the resulting sensitivities.
Status | Recruiting |
Enrollment | 100 |
Est. completion date | January 31, 2025 |
Est. primary completion date | December 31, 2024 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | All |
Age group | 18 Years to 89 Years |
Eligibility | Inclusion Criteria: - Asymptomatic and symptomatic individuals 18 years and older - Receiving standard COVID-19 screening and testing at BAMC - Do not have to be diagnosed with SARS-CoV-19 (COVID-19) but only be screened - Ability to understand consent Exclusion Criteria: - Any individual under age of 18 - Anyone unable to comply (or be assisted) with study procedures - Anyone not able to provide temperature thermal scan, and/or perform exhaled breath for approximately 8 seconds |
Country | Name | City | State |
---|---|---|---|
United States | Brooke Army Medical Center | Fort Sam Houston | Texas |
Lead Sponsor | Collaborator |
---|---|
The Geneva Foundation | Brooke Army Medical Center, Level 42 AI, Inc., Uniformed Services University of the Health Sciences |
United States,
Anderson JC. Measuring breath acetone for monitoring fat loss: Review. Obesity (Silver Spring). 2015 Dec;23(12):2327-34. doi: 10.1002/oby.21242. Epub 2015 Nov 2. — View Citation
Grassin-Delyle S, Roquencourt C, Moine P, Saffroy G, Carn S, Heming N, Fleuriet J, Salvator H, Naline E, Couderc LJ, Devillier P, Thevenot EA, Annane D; Garches COVID-19 Collaborative Group RECORDS Collaborators and Exhalomics(R) Collaborators. Metabolomics of exhaled breath in critically ill COVID-19 patients: A pilot study. EBioMedicine. 2021 Jan;63:103154. doi: 10.1016/j.ebiom.2020.103154. Epub 2020 Dec 4. — View Citation
van Keulen KE, Jansen ME, Schrauwen RWM, Kolkman JJ, Siersema PD. Volatile organic compounds in breath can serve as a non-invasive diagnostic biomarker for the detection of advanced adenomas and colorectal cancer. Aliment Pharmacol Ther. 2020 Feb;51(3):334-346. doi: 10.1111/apt.15622. Epub 2019 Dec 20. — View Citation
Zamora-Mendoza BN, Diaz de Leon-Martinez L, Rodriguez-Aguilar M, Mizaikoff B, Flores-Ramirez R. Chemometric analysis of the global pattern of volatile organic compounds in the exhaled breath of patients with COVID-19, post-COVID and healthy subjects. Proof of concept for post-COVID assessment. Talanta. 2022 Jan 1;236:122832. doi: 10.1016/j.talanta.2021.122832. Epub 2021 Sep 2. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Concentration on optimization and operationalizing the A&M Breathalyzer PROTECT Kiosk | Optimization and operationalize the A&M Breathalyzer PROTECT Kiosk, to test its detection capabilities of COVID-19 among symptomatic and asymptomatic COVID-19 carrier vs. those not infected compared to gold standard RT-PCR. | Enrollment through to study completion (min 48hrs through to 12 months) | |
Primary | Concentration on evaluating the passive sensing, breath capture system built within the A&M Breathalyzer PROTECT Kiosk. | This evaluation would conclude with a set of sensors and sensor inputs that would be analyzed by the Atomic AI platform built in the device. Field testing at BAMC is planned to determine the level of detection and discrimination for sensor combinations to SARS-CoV2 components and biomarkers detected. This testing would update the Atomic AI algorithm, within the device, to understand the accuracy of positive detection and the resulting sensitivities. | Enrollment through to study completion (min 48hrs through to 12 months) |
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