IP Library Granted Patent US 9,526,228
Granted Patent B2
US 9,526,228 · App. 14/200,782 · Granted Dec 27, 2016

Predation detection fish tracking tag

Inventors: Terrance William Fraser (Halifax, CA); Gary Donald Marsh (Boutiliers Point, CA); Chad Douglas Murphy (Porters Lake, CA); Douglas Bruce Oakley (Dartmouth, CA); Timothy Bruce Stone (Enfield, CA); Dale Mitchell Webber (Lake Fletcher, CA); Ryan Isaac Fielden (Dartmouth, CA); Kimberly Jean Miller (Halifax, CA); Mary Anne White (Halifax, CA)
Assignee: Amirix Systems Inc.
A01K11/006A01K29/005
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Quick Facts
Patent No.
US 9,526,228
App. No.
14/200,782
Granted
Dec 27, 2016
Kind
B2
Abstract

A tracking tag for aquatic animals may detect the occurrence of a predation event. The tag may include a pH sensitive material that degrades in the environment of an animal's gut. The degradation of the pH sensitive material causes a change in a detectable characteristic of the tag, which allows the tag to detect the predation event and adjust its operation accordingly.

Claims (83)

1. A tag for tracking an aquatic animal comprising:

a sensor for detecting a characteristic of the tag;

a pH sensitive material exposed to an external environment of the tag, the pH sensitive material degrading in the presence of an acidic environment, the degradation of the pH sensitive material causing a detectable change in a characteristic of the tag detected by the sensor; and

a transducer for transmitting an ultrasonic signal based on at least the detection of the characteristic of the tag by the sensor,

wherein the sensor for detecting the characteristic of the tag comprises a magnetic field sensor capable of sensing a presence or absence of a magnet, wherein the magnet is fastened to the tag by the pH sensitive material such that the magnet is released from the tag when the pH sensitive material degrades in the acidic environment and a change in the presence or absence of the magnet detected by the sensor when the magnet is released provides an indication of a predation event.

2. The tag of claim 1 , wherein the acidic environment is a gut of a predator fish.

3. The tag of claim 1 , wherein the pH sensitive material does not degrade in a neutral or basic environment due to the neutral or basic environment.

4. The tag of claim 3 , wherein the neutral or basic environment is a coelomic cavity.

5. The tag of claim 1 , wherein the pH sensitive material comprises a chitosan.

6. The tag of claim 5 , wherein the pH sensitive material is cast from a slurry of the chitosan and a solvent.

7. The tag of claim 6 , wherein the solvent is selected from:

L-ascorbic acid;

citric acid;

acetic acid; and

hydrochloric acid.

8. The tag of claim 6 , wherein the solvent is citric acid.

9. The tag of claim 6 , wherein the solvent is acetic acid.

10. The tag of claim 5 , wherein the pH sensitive material comprises a film having a thickness of at least 0.05 mm.

11. The tag of claim 10 , wherein the pH sensitive material comprises a film having a thickness of at least 0.20 mm.

12. The tag of claim 5 , wherein the pH sensitive material comprises a plasticizing agent.

13. The tag of claim 12 , wherein the plasticizing agent is selected from:

glycerol;

ethylene glycol;

poly ethylene glycol;

erythritol;

oleic acid;

propylene glycol;

di-hydroxyl stearic acid; and

sorbitol.

14. The tag of claim 12 , wherein the plasticizing agent is glycerol.

15. The tag of claim 12 , wherein the pH sensitive material was treated with a cross-linking agent.

16. The tag of claim 15 , wherein the cross-linking agent is selected from:

sodium citrate;

sodium sulfate; and

calcium chloride.

17. The tag of claim 1 , further comprising a microprocessor coupled to the transducer and the sensor, the microprocessor controlling the transmission of the ultrasonic signal by the transducer.

18. The tag of claim 17 , wherein the microprocessor operates in at least one of a first mode or a second mode based on at least the detection of the characteristic of the tag by the sensor.

19. The tag of claim 18 , wherein the microprocessor switches from operating in the first mode to operating in the second mode when the detection of the characteristic of the tag by the sensor changes as a result of a degradation of the pH sensitive material in the presence of the acidic environment.

20. The tag of claim 17 , wherein the microprocessor operates in at least a configuration mode for transferring data to the tag to configure operation of the microprocessor.

21. The tag of claim 20 , wherein a varying magnetic field is used for transferring data to the tag when the microprocessor is in the configuration mode.

22. The tag of claim 21 , wherein the microprocessor further operates in at least a calibration mode for determining a value for a compensation magnetic field to allow detecting of the varying magnetic field used for transferring data in the presence of a constant magnetic field.

23. The tag of claim 22 , wherein the microprocessor calculates the value for the compensation magnetic field and transmits the calculated value for the compensation magnetic field to an activation device.

24. The tag of claim 22 , wherein the tag transmits an indication of detected magnetic field in order to allow an activation device to calculate the value for the compensation magnetic field.

25. A tag for tracking an aquatic animal comprising:

a sensor for detecting a characteristic of the tag;

a pH sensitive material exposed to an external environment of the tag, the pH sensitive material degrading in the presence of an acidic environment, the degradation of the pH sensitive material causing a detectable change in a characteristic of the tag detected by the sensor; and

a transducer for transmitting an ultrasonic signal based on at least the detection of the characteristic of the tag by the sensor,

wherein the sensor for detecting the characteristic of the tag comprises electrodes covered in the pH sensitive material, wherein an impedance of the electrodes changes as the pH sensitive material degrades in the acidic environment and wherein a predation event is determined to have occurred when a measured impedance of the electrodes crosses a predation threshold value as the pH sensitive material degrades.

26. The tag of claim 25 , wherein the acidic environment is a gut of a predator fish.

27. The tag of claim 25 , wherein the pH sensitive material does not degrade in a neutral or basic environment due to the neutral or basic environment.

28. The tag of claim 27 , wherein the neutral or basic environment is a coelomic cavity.

29. The tag of claim 25 , wherein the pH sensitive material comprises a chitosan.

30. The tag of claim 29 , wherein the pH sensitive material is cast from a slurry of the chitosan and a solvent.

31. A tag for tracking an aquatic animal comprising:

a sensor for detecting a characteristic of the tag;

a pH sensitive material exposed to an external environment of the tag, the pH sensitive material degrading in the presence of an acidic environment, the degradation of the pH sensitive material causing a detectable change in a characteristic of the tag detected by the sensor; and

a transducer for transmitting an ultrasonic signal based on at least the detection of the characteristic of the tag by the sensor,

wherein the sensor for detecting the characteristic of the tag comprises a resilient electrode separated from a second electrode by the pH sensitive material, wherein the resilient electrode is biased in order to contact the second electrode when the pH sensitive material degrades in the acidic environment and wherein the resilient electrode is restrained from contacting the second electrode by the pH sensitive material when the pH sensitive material is not degraded.

32. The tag of claim 31 , wherein the acidic environment is a gut of a predator fish.

33. The tag of claim 31 , wherein the pH sensitive material does not degrade in a neutral or basic environment due to the neutral or basic environment.

34. The tag of claim 33 , wherein the neutral or basic environment is a coelomic cavity.

35. The tag of claim 31 , wherein the pH sensitive material comprises a chitosan.

36. The tag of claim 35 , wherein the pH sensitive material is cast from a slurry of the chitosan and a solvent.

37. A tag for tracking an aquatic animal comprising:

a sensor for detecting a characteristic of the tag;

a pH sensitive material exposed to an external environment of the tag, the pH sensitive material degrading in the presence of an acidic environment, the degradation of the pH sensitive material causing a detectable change in a characteristic of the tag detected by the sensor; and

a transducer for transmitting an ultrasonic signal based on at least the detection of the characteristic of the tag by the sensor,

wherein the sensor for detecting the characteristic of the tag comprises a resilient strain gauge cast within the pH sensitive material such that when the pH sensitive material degrades in the acidic environment the resilient strain gauge changes configurations.

38. The tag of claim 37 , wherein the acidic environment is a gut of a predator fish.

39. The tag of claim 37 , wherein the pH sensitive material does not degrade in a neutral or basic environment due to the neutral or basic environment.

40. The tag of claim 39 , wherein the neutral or basic environment is a coelomic cavity.

41. The tag of claim 37 , wherein the pH sensitive material comprises a chitosan.

42. The tag of claim 41 , wherein the pH sensitive material is cast from a slurry of the chitosan and a solvent.

43. A tag for tracking an aquatic animal comprising:

a sensor for detecting a characteristic of the tag;

a pH sensitive material exposed to an external environment of the tag, the pH sensitive material degrading in the presence of an acidic environment, the degradation of the pH sensitive material causing a detectable change in a characteristic of the tag detected by the sensor; and

a transducer for transmitting an ultrasonic signal based on at least the detection of the characteristic of the tag by the sensor,

wherein the sensor for detecting the characteristic of the tag comprises a light transmitting device and a light receiving device aligned with the light transmitting device and separated by the pH sensitive material to block transmission of light from the light transmitting device to the light receiving device.

44. The tag of claim 43 , wherein the acidic environment is a gut of a predator fish.

45. The tag of claim 43 , wherein the pH sensitive material does not degrade in a neutral or basic environment due to the neutral or basic environment.

46. The tag of claim 45 , wherein the neutral or basic environment is a coelomic cavity.

47. The tag of claim 43 , wherein the pH sensitive material comprises a chitosan.

48. The tag of claim 47 , wherein the pH sensitive material is cast from a slurry of the chitosan and a solvent.

Assignments (2)
CHANGE OF NAME Recorded May 15, 2019
From: AMIRIX SYSTEMS INC.
To: INNOVASEA MARINE SYSTEMS CANADA INC.
Reel/Frame 049182/0626 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2014
From: FRASER, TERRANCE WILLIAM; MARSH, GARY DONALD; MURPHY, CHAD DOUGLAS; OAKLEY, DOUGLAS BRUCE; STONE, TIMOTHY BRUCE; WEBBER, DALE MITCHELL; FIELDEN, RYAN ISAAC; MILLER, KIMBERLY JEAN; WHITE, MARY ANNE
To: AMIRIX SYSTEMS INC.
Reel/Frame 033432/0621 →
Continuity (1)
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