IP Library › Granted Patent US 9,540,632
Granted Patent B2
US 9,540,632 · App. 14/615,110 · Granted Jan 10, 2017

Method and device for plankton separation

Inventor: Nancy Leland (North Andover, MA)
C12N13/00C12N1/02C12N1/10C12N1/12C12N1/20C12M47/02
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Quick Facts
Patent No.
US 9,540,632
App. No.
14/615,110
Granted
Jan 10, 2017
Kind
B2
Abstract

Methods, devices and kits for the physical separation of plankton into its component parts utilizing phototactic behavior are described. The methods utilize positive phototactic behavior and negative contrast orientation of the zooplankton for maximal in situ separation of phytoplankton and zooplankton for use in further studies and evaluation of separation efficiency. The devices provide effective conditions for use in the separation of plankton into component parts.

Claims (18)

1. A plankton separating device comprising:

a darkened chamber having an outer perimeter surrounding a vertical central axis, and a maximum outer perimeter dimension that extends downwardly to a darkened narrowed section which ends at a port at the bottom, wherein the darkened narrowed section has an inner opening having a size above 13 mm and up to 21.5 mm ±2 mm and an openable closure; and

a light permeable collection tube extending along the vertical central axis attached to the port for allowing highly directional ambient light to enter the collection tube and pass upwardly through the darkened narrowed section and inner opening which are configured to produce a narrow defined beam of light upwardly into the darkened chamber along the vertical central axis without inhibiting zooplankton migration therethrough when the closure is open, wherein the collection tube is of sufficient length to reinforce migration of the zooplankton downwardly, by extending downwardly away from the darkened chamber beyond a point that makes about a 20°±2° angle to the vertical central axis while extending to a nearest location of maximum outer perimeter dimension of the darkened chamber, thereby providing a contrast shadow from the darkened chamber relative to the collection tube simulating a predator to zooplankton, and a length in the collection tube for zooplankton to migrate from and move away from the darkened chamber a sufficient distance to minimize zooplankton collected in the collection tube from migrating back into the darkened chamber, thereby separating plankton into its component parts,

wherein the closure is configured to be changed from a closed state to an open state.

2. The device of claim 1 , wherein the closure is a stopper or valve.

3. The device of claim 1 , wherein the darkened chamber is configured to be positioned above the collection tube, the collection tube being elongated and extending from the darkened chamber along the vertical central axis, starting beyond a point that makes about a 48° angle to the vertical central axis while extending to the nearest location of maximum outer perimeter dimension of the darkened chamber.

4. The device of claim 1 , wherein the collection tube is transparent.

5. The device of claim 1 , wherein the collection tube has one of tapered or straight side walls.

6. The device of claim 1 , in which the outer perimeter of the darkened chamber and the side walls of the collection tube are generally round.

7. The device of claim 1 in which at least about 40% of length of the transparent collection tube extends beyond said point that makes said about a 20° angle.

8. The device of claim 4 in which the darkened chamber and the collection tube have outer diameters with a darkened chamber OD b to transparent collection tube OD t ratio of about 3-3.5 to 1, the transparent collection tube having a length with a transparent collection tube length to OD t ratio of about 3.9-5.2 to 1.

9. The device of claim 1 in which the darkened chamber has a capacity of at least about one liter, and the collection tube has a capacity of at least about 50 ml.

10. The device of claim 1 in which the inner opening is between the darkened chamber and the collection tube and size is in the range of 19 to 22 mm across.

11. The device of claim 4 in which the transparent collection tube has an inner diameter, at least a portion of which being about 20 mm to about 26 mm.

12. The device of claim 1 in which the length of the collection tube is at least about 110 mm.

13. A plankton separation device comprising:

a darkened chamber having an outer perimeter surrounding a vertical central axis, and a maximum outer perimeter dimension that extends downwardly to a darkened narrowed section which ends at a port at the bottom, wherein the darkened narrowed section has an inner opening having a size above 13 mm and up to 21.5 mm±2 mm; and

a light permeable collection tube extending along the vertical central axis and extending from the port for allowing light to enter the collection tube and pass upwardly through the darkened narrowed section and inner opening, which are configured to produce a narrow defined beam of light into the darkened chamber along the vertical central axis without inhibiting zooplankton migration therethrough, the collection tube of sufficient length to reinforce migration of zooplankton downwardly, by extending downwardly away from the darkened chamber beyond a point that makes about a 20°±2° angle to the vertical central axis while extending to a nearest location of maximum outer perimeter dimension of the darkened chamber, thereby providing a contrast shadow relative to the collection tube simulating a predator to zooplankton, and sufficient length in the collection tube for zooplankton to migrate from and move away from the darkened chamber a sufficient distance to minimize zooplankton collected in the collection tube from migrating back into the darkened chamber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2023
From: LELAND, NANCY
To: NANCY LELAND TRUST
Reel/Frame 062450/0332 →
Continuity (2)
Provisional Application 61936698 · Feb 6, 2014
Related Publication 20150218548A1 · Aug 6, 2015