USH2177H

Cancellation of ringing in magnetic resonance utilizing a composite pulse

Claim Score by NHIP

Read claim 8, the broadest

Abstract

A magnetic resonance detection apparatus is provided that is not susceptible to acoustic ringing, and a method is provided for eliminating or canceling acoustic ringing from a detected magnetic resonance signal. Specifically, a composite pulse is utilized that allows for both efficient reduction of acoustic ringing signals and the detection of true NQR signals. The composite pulse can be used in any of the common NQR pulse sequences currently utilized simply via substitution of the original single pulses with the composite pulse. Furthermore, although a preferred application involves the spin-1 nucleus 14N and NQR, the composite pulse will be useful for the NQR of other nuclei such as 35CI and 39K and in NMR applications and involving half-integer quadrupolar nuclei and spin- 1/2 nuclei. In addition, coil ringdown and piezoelectric ringing are also substantially reduced.

Term

Term ended

Projected expiry passed 8 August 2023, 3.1 years ago.

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24 claims: 3 independent, 21 dependent

  1. 1
    A detection apparatus comprising:means for generating an RF composite pulse, wherein said RF composite pulse consists essentially of two or more sub-pulses of different phase;means for applying the RF composite pulse to a test sample;means for detecting a nuclear resonance return signal in response to the application of the RF composite pulse to the test sample, wherein the detected nuclear resonance return signal includes a true signal component and a ringing signal component;and processing means for processing the detected nuclear resonance return signal to identify the true signal component;wherein the phases of each of the sub-pulses of the composite pulse, a phase of the true signal component and a phase of the ringing signal component are different.
  2. 8
    Broadest claimClaim Score 62, broad(NHIP)A method comprising:generating an RF composite pulse, wherein said RF composite pulse consists essentially of two or more sub-pulses of different phase;applying the RF composite pulse to a test sample;detecting a nuclear resonance return signal in response to the application of the RF composite pulse to the test sample, wherein the detected nuclear resonance return signal includes a true signal component and a ringing signal component;and processing the detected nuclear resonance return signal to identify the true signal component;wherein the phases of each of the sub-pulses of the composite pulse, a phase of the true signal component and a phase of the ringing signal component are different.
  3. 15
    A detection apparatus comprising:a radio frequency source;a pulse generator mechanism coupled to the radio frequency source, wherein the pulse generator mechanism generates a radio frequency composite pulse consisting essentially of two or more sub-pulses of different phase;a coil coupled to receive the radio frequency composite pulse from the pulse generator mechanism;a detector coupled to the coil, wherein the detector detects a nuclear resonance signal received from the coil that includes a true signal component and a ringing signal component;and a processor coupled to the detector, wherein the processor identifies the true signal component within the nuclear resonance signal;wherein the phases of each of the sub-pulses of the composite pulse, a phase of the true signal component and a phase of the ringing signal component are different.