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This is a proof of concept study that will evaluate the feasibility of a vapor nanobubble technology (MalariSense) for malaria diagnostics. The MalariSense technology will use a highly innovative approach based on the transdermal non-invasive detection of vapor nanobubbles produced by the excitation of malaria-specific hemozoin by safe, low-energy laser pulse. The objectives of this study will be to determine the sensitivity and specificity of MalariSense in diagnosing malaria in malaria suspected cases attending a health facility in The Gambia and to identify factors influencing the diagnostic accuracy of MalariSense
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This is a proof of concept study that will evaluate the feasibility of a vapor nanobubble technology (MalariSense) for malaria diagnostics. The primary objective is to determine the sensitivity of MalariSense against microscopy in diagnosing malaria in malaria suspected cases attending a health facility in The Gambia. The secondary objectives include the following;
The study will enrol a total sample size of 50 patients with confirmed malaria. It is estimated that about 125 to 167 suspected cases will need to be screened/tested to get this sample size. The Sample size will be increased by 10% to allow for any missing values - therefore up to 185 suspected cases screened. In addition, a convenience sample of 30 malaria negative participants will be enrolled for comparisons between malaria positive and malaria negative populations. RDT positive patients will be provided with antimalarial treatment while the others will receive treatment according to their condition. Microscopy and species-specific PCR will be performed later. Microscopy results will be taken as the gold standard.
There will not be any active follow up. Study participants will be asked to come back 2 days after the test, or earlier if they notice a problem.
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208 participants in 1 patient group
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Data sourced from clinicaltrials.gov
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