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Assessment of Accuracy, Precision, and Feasibility of a Handheld Near-Infrared Light Device (InfraScanner 2500™) in Detecting Traumatic Intracranial Hemorrhage in Uganda
The goal of this study is to determine the sensitivity, specificity, and positive and negative predictive values of the portable near-infrared-based device (portable NIR-based device), the InfraScanner 2500™, to detect intracranial hematomas (epidural hematomas (EDH) and/or subdural hematomas (SDH)) in patients hospitalized at Mbarara Regional Referral Hospital (MRRH) or Mayanja Memorial Hospital (MMH) who have sustained or who are suspected to have sustained head trauma.
When applicable (conscious patient and/or family or legally authorized representative is present) the study will be introduced to the patient and relevant parties prior to the research team approaching the patient. While head trauma frequently results in impaired cognition and/or consciousness, and due to the urgency of these circumstances patients are often not accompanied by kin, whenever appropriate, the purpose of the research and the procedure will be explained in detail with all questions answered to the patient's and/or representative's satisfaction. Because patients who sustain head trauma injuries typically remain within the hospital for multiple days for monitoring and care, each participant may undergo multiple Computed Tomography (CT) scans over the course of his or her hospitalization, affording the opportunity of one to numerous measurements from each patient during his or her hospital stay. Upon presentation to the casualty unit at MRRH or MMH and following each CT scan, the study team will approach the patient to scan the patient's cranium with the InfraScanner 2500™. If permission is granted, the study team member sequentially measures the optical absorption for each of the 8 quadrants of the scalp (frontal, temporal, parietal, and occipital bilaterally). The device is engineered such that the light emitter and receiver are spaced 4 cm apart, allowing the light's intensity to be measured between adjacent light guides. This entire procedure, including greeting and scanning the patient should take \<10 minutes. Subsequent CT scan(s) the patient receives determines the number of potential data collections. The patient and/or representative may refuse a scan during any encounter, and as such, the scan will not be done. For each patient scanned with the InfraScanner 2500™ they will be de-identified with a subject number, with age, sex, gender, skin color, hair color, hair thickness, mechanism of injury, Glasgow Coma Scale score, and mean time elapsed between CT scan and near-infrared measurement. These data will be stored in de-identified form on the Research Electronic Data Capture (REDCap) database and/or Microsoft Excel on a secured network drive within the Department of Neurosurgery at Duke. The collection period for each research subject concludes 30-days following his or her initial measurement with the InfraScanner 2500™, patient discharge, or patient death.
Age
12 - 99 years
Sex
ALL
Healthy Volunteers
No
Mayanja Memorial Hospital
Mbarara, Uganda
Mbarara Regional Referral Hospital
Mbarara, Uganda
Start Date
July 30, 2024
Primary Completion Date
February 28, 2025
Completion Date
March 30, 2025
Last Updated
February 25, 2026
180
ACTUAL participants
InfraScanner 2500™
DEVICE
Lead Sponsor
Duke University
Collaborators
Data Source & Attribution
This clinical trial information is sourced from ClinicalTrials.gov, a service of the U.S. National Institutes of Health.
Modifications: This data has been reformatted for display purposes. Eligibility criteria have been parsed into inclusion/exclusion sections. Location data has been geocoded to enable distance-based search. For the authoritative and most current information, please visit ClinicalTrials.gov.
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View ClinicalTrials.gov Terms and ConditionsNCT04303065