IP Library Patent Application 11271974
Patent Application
App. No. 11/271,974

NQR method and apparatus for testing a sample by applying multiple excitation blocks with different delay times

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Patent No.
US None
App. No.
11/271,974
Abstract

Methods of and apparatus for Nuclear Quadrupole Resonance (NQR) testing a sample containing quadrupolar nuclei exhibiting a given value of spin-lattice relaxation time, T 1 , are disclosed. The method comprises applying two excitation blocks to excite nuclear quadrupole resonance, there being a given delay time between the two blocks, detecting resonance response signals, and comparing the response signals from respective blocks. The delay time is less than the T 1 value of the nuclei.

Claims (81)

1 . A method of Nuclear Quadrupole Resonance testing a sample containing quadrupolar nuclei exhibiting a given value of spin-spin relaxation time, T 2 , the method comprising:

applying two excitation blocks to excite nuclear quadrupole resonance, there being a given delay time between the two blocks, each excitation block comprising a multiplicity of excitation pulses and at least the majority of the pulses in one block being substantially the same as the corresponding pulses in the other block;

detecting resonance response signals; and

comparing the response signals from respective blocks;

wherein the delay time between the two excitation blocks is in the range 1 to 5 times T 2 .

2 . A method according to claim 1 wherein the majority of the pulses in each block have phases which are within 90° of each other.

3 . A method according to claim 1 wherein each block comprises a plurality of pulses with no phase alternation between any two such pulses.

4 . A method of Nuclear Quadrupole Resonance testing a sample containing quadrupolar nuclei exhibiting a given value of spin-spin relaxation time, T 2 , the method comprising:

applying two excitation blocks to excite nuclear quadrupole resonance, there being a given delay time between the two blocks, each excitation block comprising a plurality of excitation pulses with no phase alternation between the pulses in a block;

detecting resonance response signals; and

comparing the response signals from respective blocks;

wherein the delay time between the two excitation blocks is in the range 1 to 5 times T 2 .

5 . A method according to claim 1 further comprising applying excitation between the two excitation blocks.

6 . A method of Nuclear Quadrupole Resonance testing a sample containing quadrupolar nuclei exhibiting a given value of spin-lattice relaxation time, T 1 , the method comprising:

applying two excitation blocks to excite nuclear quadrupole resonance, there being a given delay time between the two blocks;

detecting resonance response signals; and

comparing the response signals from respective blocks;

wherein the delay time is less than the T 1 value of the nuclei;

the method further comprising applying excitation between the two excitation blocks.

7 . A method according to claim 5 wherein an excitation pulse is applied at a time substantially coincident with an echo generated by the first block.

8 . A method according to claim 5 wherein an excitation pulse is applied at a time adjacent the centre of the delay time between the two blocks.

9 . A method according to claim 5 wherein an excitation pulse is applied between the two blocks and the pulse has an effective flip angle of between 20° and 160°, or 200° and 340°, or 30° and 60°, or 70° and 110°, or 160° and 200°.

10 . A method according to claim 5 wherein a plurality of excitation pulses is applied between the two blocks, the second such pulse being of the same or different flip angle as the first.

11 . A method according to claim 5 wherein excitation pulses are applied between the excitation blocks to provide saturation.

12 . A method according to claim 1 wherein the sample may give rise to spurious signals which interfere with response signals from the quadrupolar nuclei, the spurious signals having a given decay time, and wherein a delay time between two adjacent pulses in a block is less than the decay time of the spurious signals.

13 . A method according to claim 1 wherein the step of comparing comprises subtracting the response signals from one block from those of the other block.

14 . A method according to claim 1 wherein the delay time is less than half, preferably less than a quarter, more preferably less than a tenth and even more preferably less than a hundredth of the T 1 value.

15 . A method according to claim 1 wherein the nuclei exhibit a given value of spin-spin relaxation time, T 2 , and the delay time is greater than once, preferably greater than twice, more preferably greater three times and even more preferably greater than five times the T 2 value.

16 . A method according to claim 15 wherein the delay time is less than ten times and preferably less than five times the T 2 value.

17 . A method according to claim 1 wherein the delay time is between 1 and 1000 ms, preferably between 5 and 500 ms, more preferably between 10 and 100 ms and even more preferably between 20 and 60 ms.

18 . A method according to claim 1 wherein the first and second blocks, and the delay time therebetween, are arranged such that, if the resonance frequency of the nuclei were varied over a given range, the first and second blocks would generate response signals whose variation with frequency over the given range would in combination be less than for the response signals from separately either the first or second block.

19 . A method according to claim 1 wherein each excitation block comprises a first excitation sub-block and a second excitation sub-block, the response to one of the first and second sub-blocks in one block being compared to the response to one of the first and second sub-blocks in the other block.

20 . A method according to claim 19 wherein the first sub-block in each excitation block is different from the second sub-block in each excitation block.

21 . A method according to claim 20 wherein the repetition rate of the pulses in the first sub-block is different from the repetition rate of the pulses in the second sub-block.

22 . A method according to claim 1 wherein the time between the first and second pulse in the first block is different from the corresponding time for the second block.

23 . A method according to claim 1 wherein each block comprises in initial preparation pulse followed by at least one pulse of different phase from the preparation pulse.

24 . A method according to claim 23 wherein for one of the blocks the time between the preparation pulse and the immediately following pulse is half the time between subsequent pulses in the block.

25 . A method according to claim 23 wherein for one of the blocks the time between the preparation pulse and the immediately following pulse is substantially the same as the time between subsequent pulses in the block.

26 . A method according to claim 1 wherein each excitation block comprises a plurality of excitation pulses, the time between each such pulse being the same.

27 . A method according to claim 1 wherein at least one of the pulses in an excitation block is a phase split pulse.

28 . A method of Nuclear Quadrupole Resonance testing a sample containing quadrupolar nuclei exhibiting a given value of spin-spin relaxation time, T 2 , the method comprising:

applying two excitation blocks to excite nuclear quadrupole resonance, there being a given delay time between the two blocks, each excitation block comprising a plurality of excitation pulses, the time between each such pulse being the same, and at least the majority of the pulses in one block being substantially the same as the corresponding pulses in the other block;

detecting resonance response signals; and

comparing the response signals from respective blocks;

wherein the delay time between the two excitation blocks is in the range 1 to 5 times T 2 .

29 . A method according to claim 28 wherein the delay time is less than three times or twice the T 1 value of the nuclei or less than the T 1 value of the nuclei.

30 . Apparatus for Nuclear Quadrupole Resonance testing a sample containing quadrupolar nuclei, comprising:

means for applying two excitation blocks to excite nuclear quadrupole resonance, there being a given delay time between the two blocks, each excitation block comprising a multiplicity of excitation pulses and at least the majority of the pulses in one block being substantially the same as the corresponding pulses in the other block;

means for detecting resonance response signals from the blocks; and

means for comparing the response signals from the respective blocks;

wherein the delay time is between 1 and 1000 ms, preferably between 5 and 500 ms, more preferably between 10 and 100 ms and even more preferably between 20 and 60 ms.

31 . Apparatus according to claim 30 wherein most of the pulses in each block have phases which are within 90° of each other.

32 . Apparatus according to claim 30 wherein each block comprises a plurality of pulses with no phase alternation between any two such pulses.

33 . Apparatus for Nuclear Quadrupole Resonance testing a sample containing quadrupolar nuclei, comprising:

means for applying two excitation blocks to excite nuclear quadrupole resonance, there being a given delay time between the two blocks, each block comprising a plurality of pulses with no phase alternation between any two such pulses;

means for detecting resonance response signals from the blocks; and

means for comparing the response signals from the respective blocks;

wherein the delay time is between 1 and 1000 ms, preferably between 5 and 500 ms, more preferably between 10 and 100 ms and even more preferably between 20 and 60 ms.

34 . Apparatus according to claim 30 wherein the excitation applying means is adapted to apply excitation between the two excitation blocks.

35 . Apparatus for Nuclear Quadrupole Resonance testing a sample containing quadrupolar nuclei, comprising:

means for applying two excitation blocks to excite nuclear quadrupole resonance, there being a given delay time between the two blocks;

means for detecting resonance response signals from the blocks; and

means for comparing the response signals from the respective blocks;

wherein the delay time is between 1 and 1000 ms, preferably between 5 and 500 ms, more preferably between 10 and 100 ms and even more preferably between 20 and 60 ms,

and wherein the excitation applying means is adapted to apply excitation between the two excitation blocks.

36 . Apparatus according to claim 34 wherein the excitation applying means is adapted to apply an excitation pulse at a time substantially coincident with an echo generated by the first block.

37 . Apparatus according to claim 34 wherein the excitation applying means is adapted to apply an excitation pulse at a time adjacent the centre of the delay time between the two blocks.

38 . Apparatus according to claim 34 wherein the excitation applying means is adapted to apply an excitation pulse between the two blocks and the pulse has an effective flip angle of between 20° and 160°, or 200° and 340°, or 30° and 60°, or 70° and 110°, or 160° and 200°.

39 . Apparatus according to claim 34 wherein the excitation applying means is adapted to apply a plurality of excitation pulses between the two blocks, the second such pulse being of the same or different flip angle as the first.

40 . Apparatus according to any of claim 30 wherein the means for comparing comprises means for subtracting the response signals from one block from those of the other block.

41 . Apparatus according to claim 30 wherein the first and second blocks, and the delay time therebetween, are arranged such that if the resonance frequency of the nuclei were varied over a given range, the first and second blocks would generate response signals whose variation with frequency over the given range would in combination be less than for the response signals from separately either the first or second block.

42 . Apparatus according to claim 30 wherein each excitation block comprises a first excitation sub-block and a second excitation sub-block, and the comparing means is adapted to compare the response to one of the first and second sub-blocks in one block and the response to one of the first and second sub-blocks in the other block.

43 . Apparatus according to claim 42 wherein the first sub-block in each excitation block is different from the second sub-block in each excitation block.

44 . Apparatus according to claim 42 wherein each sub-block comprises a plurality of pulses, and the repetition rate of the pulses in the first sub-block is different from the repetition rate of the pulses in the second sub-block.

45 . Apparatus according to claim 30 wherein the time between the first and second pulse in the first block is different from the corresponding time for the second block.

46 . Apparatus according to claim 30 wherein each block comprises an initial preparation pulse followed by at least one pulse of different phase from the preparation pulse.

47 . Apparatus according to claim 46 wherein for one of the blocks the time between the preparation pulse and the immediately following pulse is half the time between subsequent pulses in the block.

48 . Apparatus according to claim 46 wherein for one of the blocks the time between the preparation pulse and the immediately following pulse is substantially the same as the time between subsequent pulses in the block.

49 . Apparatus according to claim 30 wherein the time between each pulse in an excitation block is the same.

50 . A method of Nuclear Quadrupole Resonance testing substantially as herein described with reference to any of the first to seventh preferred embodiments.

51 . Apparatus for Nuclear Quadrupole Resonance testing a sample substantially as herein described with reference to and as illustrated in FIG. 2 or any of FIGS. 3 to 12 of the accompanying drawings.