IP Library › Granted Patent US 10,684,232
Granted Patent B2
US 10,684,232 · App. 15/228,337 · Granted Jun 16, 2020

Sample collection and bioluminescent analysis system

Inventors: Marc Warren Gordon (Carnation, WA); Jon Keith Perrin (Redmond, WA); Alexander Michael Diener (Seattle, WA); David Oscar Iverson (Seattle, WA); Kyle Stuart Johnson (Sammamish, WA); Garet Glenn Nenninger (Seattle, WA); John Russell Murkowski (Seattle, WA); Kristin Marie Will (Seattle, WA); Chad Austin Brinckerhoff (Issaquah, WA); Phillip T. Feldsine (Mercer Island, WA); Tim Allen Kelly (Bellevue, WA)
Assignee: BIOCONTROL SYSTEMS, INC.
G01N21/94B01L3/5029G01N1/02G01N21/01G01N21/031G01N21/76G01N21/763B01L3/5082B01L2300/168B01L2400/0683G01N21/0303G01N35/00693G01N2001/028G01N2021/0307G01N2201/0221G01N2201/065
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Quick Facts
Patent No.
US 10,684,232
App. No.
15/228,337
Granted
Jun 16, 2020
Kind
B2
Abstract

Methods and apparatus for evaluating the quality of an environment or process by measuring light emitted from a bioluminescent sample containing ATP, ADP, or alkaline phosphatase. The apparatus comprises a sample collection and analysis system used to collect a sample, mix reagents, react the sample, and collect it in a measurement chamber. The system includes an instrument having a photon detection assembly for use with the sample testing device and one or more probe assemblies that optically cooperate with the instrument. The instrument includes a dark chamber with a reflective interior surface which may be concave or preferably spherical, and a photon detection sensor such as a multi-pixel photon counter sensor. A substantially transparent portion of the probe assembly, and liquid contained therein, focus bioluminescence toward the photon detection sensor.

Claims (12)

1. A method of operating a monitoring system, the method comprising:

inserting a swab with a test sample into a probe assembly having a transparent chamber portion;

inserting the probe assembly into an opening to a passage of a dark chamber assembly that terminates in a dark chamber having a spherical reflective interior surface, a center point that is a center of the spherical reflective interior surface, and two receiver openings opposed to one another across a diameter of the spherical reflective interior surface; and

advancing the probe assembly in the passage until the transparent chamber portion intersects the center point of the spherical reflective interior surface wherein advancing the probe assembly in the passage until the chamber portion intersects the center point of the spherical reflective interior surface includes advancing the probe assembly through at least one of the two receiver openings.

2. The method of claim 1 , further comprising:

focusing a bioluminescence resulting from the sample toward a multi-pixel photon counter.

3. The method of claim 1 , further comprising:

focusing by the transparent chamber portion and a liquid contained therein a bioluminescence resulting from the sample toward a multi-pixel photon counter.

4. The method of claim 1 , further comprising:

swiping a surface to be tested with a tip of the swab before inserting the swab into the probe assembly, and wherein inserting the swab into the probe assembly includes inserting the swab such that the tip of the swab resides in the transparent chamber portion of the probe assembly.

5. The method of claim 1 , further comprising: wherein the probe assembly includes at least one reagent reservoir, and breaching the at least one reagent reservoir of the probe assembly to contact the sample with a reagent.

6. The method of claim 1 wherein advancing the probe assembly in the passage until the transparent chamber portion intersects the center point of the spherical reflective interior surface includes advancing the probe assembly through both of the receiver openings.

Continuity (3)
Division 13645183 · Oct 4, 2012
Provisional Application 61666637 · Jun 29, 2012
Related Publication 20170030841A1 · Feb 2, 2017
Cited By (1)
US 12,350,388