IP Library Granted Patent US 10,605,738
Granted Patent B2
US 10,605,738 · App. 12/584,807 · Granted Mar 31, 2020

Device for microbiological analysis

Inventor: Gael Waiche (Molsheim, FR)
Assignee: EMD Millipore Corporation
G01N21/763C12Q1/04G01N21/645G01N21/6428G01N21/6447G01N33/582G01N2021/6419G01N2201/0627G01N2201/0634
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Quick Facts
Patent No.
US 10,605,738
App. No.
12/584,807
Granted
Mar 31, 2020
Kind
B2
Abstract

The device for the microbiological analysis of a support adapted to contain microorganisms marked by a fluorophore agent, said agent being adapted to absorb light energy with an absorption spectrum ( 53 ) having a crest ( 53 ′) at a predetermined absorption wavelength (λ 2 ) and to release that energy by emitting light with an emission spectrum ( 54 ) having a crest ( 54 ′) at a predetermined emission wavelength (λ 3 ) distinct from said absorption wavelength (λ 2 ), comprises illuminating means; the spectrum ( 55 ) of the excitation light coming from the illuminating means having a crest ( 55 ′) at a predetermined excitation wavelength (λ 1 ) with a predetermined difference between the excitation (λ 1 ) and absorption (λ 2 ) wavelengths by virtue of which it is made easy to discriminate the light emitted by said fluorophore agent from that coming from the illuminating means.

Claims (8)

1. An assembly, comprising in combination, microorganisms marked by a fluorophore agent, and a device for microbiological analysis of said microorganisms, said device comprising a casing having an interior forming an analysis chamber isolated from surrounding light, a drawer having a body, a collar, and a grasping lug, wherein in the body there is formed a cylindrical cavity provided to receive a filter unit, the filter unit comprising a microporous membrane as a support, the support containing said microorganisms marked by said fluorophore agent positioned in said interior of said casing, said agent, on contact with said microorganisms, absorbing light energy with an absorption spectrum having a crest at a predetermined absorption wavelength (λ 2 ) and releasing that energy by emitting fluorescent light with an emission spectrum having a crest at a predetermined emission wavelength (λ 3 ) distinct from said absorption wavelength (λ 2 ), said device further comprising an illumination member positioned in said interior of said casing and emitting excitation light and illuminating said support in order for said marked microorganisms to emit, in response to said excitation light emitted by said illumination member, light with said emission spectrum wherein the spectrum of the excitation light coming from said illumination member comprises a crest at a predetermined excitation wavelength (λ 1 ) distinct from said absorption (λ 2 ) and emission (λ 3 ) wavelengths of said fluorophore agent, such that said absorption wavelength (λ 2 ) is situated between said excitation (λ 1 ) and emission (λ 3 ) wavelengths with a predetermined difference between the excitation (λ 1 ) and absorption (λ 2 ) wavelengths, said device further comprising a window formed in said casing for viewing light emitted by said fluorophore agent provided with a low-pass colored filter, by virtue of which the light emitted by said fluorophore agent passes through said low-pass colored filter and is then viewed by a naked eye of a viewer, said low-pass colored filter being the only filter between said support and the naked eye of the viewer, and the light emitted by said fluorophore agent can be discriminated from that coming from said illumination member with the naked eye of a viewer in the surrounding light without the use of an input filter, wherein said illumination member and said window are arranged such that said microorganism contained on said support faces both said illumination member and said window.

2. The assembly according to claim 1 , wherein said excitation wavelength (λ 1 ) is shorter than said absorption wavelength (λ 2 ), itself shorter than said emission wavelength (λ 3 ).

3. The assembly according to claim 1 , wherein the difference between said excitation (λ 1 ) and absorption (λ 2 ) wavelengths is less than the difference between said absorption (λ 2 ) and emission (λ 3 ) wavelengths of said fluorophore agent.

4. The assembly according to claim 1 , wherein a cut-off wavelength of said low-pass colored filter is situated between said absorption wavelength (λ 2 ) and said emission wavelength (λ 3 ).

5. The assembly according to claim 1 , wherein said illumination member comprises at least one base on which is mounted at least one group of light sources, with said sources of that group being regularly spaced from each other to form an illuminating array for said support.

6. The assembly according to claim 5 , wherein said illumination member comprises two said bases inclined relative to each other in the direction of a predetermined location for reception of said support in the device.

7. The assembly according to claim 6 , wherein each said base is inclined by an angle (A) between 40° and 50° relative to said predetermined location for reception of said support.

8. The assembly according to claim 5 , wherein said light sources are light emitting diodes.

Assignments (3)
CHANGE OF ADDRESS Recorded Feb 1, 2018
From: EMD MILLIPORE CORPORATION
To: EMD MILLIPORE CORPORATION
Reel/Frame 045225/0156 →
CHANGE OF NAME Recorded Jan 31, 2012
From: MILLIPORE CORPORATION
To: EMD MILLIPORE CORPORATION
Reel/Frame 027620/0891 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2009
From: WAICHE, GAEL
To: MILLIPORE CORPORATION
Reel/Frame 023547/0353 →