DETECTION OF COVID-19

The steps of the method are: providing a generator adapted to produce specific wavelengths to maximize light emissions; providing a scintillator in operative proximity to the generator, the scintillator having an associated scintillator screen of a specific phosphor or other excitive type sensitive to various wavelengths, the scintillator being sensitive to a wavelength that maximizes light emissions; positioning a patient to be diagnosed between the generator and the scintillator; emitting a specific wavelength from the generator to and through the patient onto the scintillator screen whereby the associated scintillator screen will light up and sparkle to produce a light image of the patient; providing a camera in operative proximity to the scintillator screen to record the light image produced on the scintillator screen; providing a computer with a computer screen and software; capturing and analyzing the recorded light images from the camera; and obtaining a diagnosis for treatment of the patient..

Medienart:

Patent

Erscheinungsjahr:

2020

Erschienen:

2020

Enthalten in:

Europäisches Patentamt - (2020) vom: 09. Juli Zur Gesamtaufnahme - year:2020

Sprache:

Englisch

Beteiligte Personen:

COGLEY THOMAS PAUL [VerfasserIn]

Links:

Volltext [kostenfrei]

Themen:

615
A61B: Diagnosis; surgery; identification (analysing biological material g01n, e.g. g01n0033480000)
G16H: Healthcare informatics, i.e. information and communication technology [ict] specially adapted for the handling or processing of medical or healthcare data
Med

Anmerkungen:

Source: www.epo.org (no modifications made), First posted: 2020-07-09, Last update posted on www.tib.eu: 2022-06-23, Last updated: 2023-02-09

Patentnummer:

US2020214649

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

EPA005953650