Claims
- 1. A system to detect the presence of a predetermined amount of a specific target organism comprising a flow cytometer that can receive a liquid analyte sample, said cytometer comprising a laser, a flow cell for passing said analyte pass a beam of light emitted from said laser, a first photodetector for detecting the peak intensity of light emitted from said analyte at a predetermined wavelength and generating a signal, a second photodetector for detecting the duration of emitting light and generating a second signal, said second signal reflecting the size of material in said analyte, processing means to compare data from said first said and said second signals, said comparison comprising defining a region R1 said region comprising a minimum and maximum value for said first signal and minimum and maximum value for said second signal, setting a threshold level of counts in said region R1 using data from a first background measurement and then comparing a second measurement to said threshold value to determine if said threshold value is exceeded.
- 2. The system as recited in claim 1 further comprising air sampling means wherein said air sampling means draws a sample containing an organism from air and into a liquid solution and a means to prepare said sample by combined said sample with a fluorescent marker to form said analyte.
- 3. The system recited in claim 2 wherein said air sampling means comprise a wet-walled cyclone.
- 4. The system recited in claim 2 wherein said air sampling means comprises an impinger.
- 5. The system recited in claim 2 wherein said fluorescent marker is a fluorescent nucleic acid dye.
- 6. The system as recited in claim 2 wherein said dye comprises a combination of Syto 15 and Syto 25.
- 7. The system as recited in claim 1 wherein said target organism is bacillus anthrasis.
- 8. A method of determining whether there exists a predetermined threshold level of a target biological organism in an air sample comprising using flow cytometery data comprising defining a region R1 wherein said region is defined by a first upper and first lower limit comprising peak intensity values, defining a second upper and lower limit comprising size values, determining a maximum threshold value for data in said region R1 using a background measurement value and a constant, comparing subsequent environmental measurement values to said threshold value and providing an output in the event said threshold value is exceeded.
- 9. The system as recited in claim 8 wherein said target organism is bacillus anthrasis.
- 10. A computer readable medium containing instructions for detecting when a predetermine level of a pre-selected target organism is found in an air sample as reflected from data generated using a flow cytometer comprising defining a region R1 wherein said region is defined by a first upper and first lower limit comprising peak intensity values, defining a second upper and lower limit comprising size values, determining a maximum threshold value for data in said region R1 using a background measurement value and a constant, comparing subsequent environmental measurement values to said threshold value and providing an output in the event said threshold value is exceeded.
- 11. The computer readable medium as recited in claim 10 wherein said target organism is Bacillus anthrasis.
Parent Case Info
[0001] The present invention relates to an improved manner in which to detect the presence of harmful or pathogenic biological materials using flow cytometry techniques. The applicant claims the benefit of U.S. application Ser. No. 60/209,787 filed on Jun. 7, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60209787 |
Jun 2000 |
US |