CA2394857C

Method and apparatus for making measurements of accumulations of magnetic particles

Abstract

An apparatus is provided for quantitatively measuring groups of magnetic particles (11). The particles (11) arecomplexed with substances to be determined and are excited in a magnetic field. The magnetizations of the magnetic particles arethereby caused to oscillate at the excitation frequency in the manner of a dipole to create their own fields. These fields are inductivelycoupled to at least one sensor such as sensing coils (43) fabricated in a gradiometer configuration. The output signals from the sensingcoils (43) are appropriately amplified and processed to provide useful output indications (67).

CA2394857C, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Expired 29 November 2020, 5.8 years ago.

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  3. Granted
  4. Expired
  5. Today

59 claims: 7 independent, 52 dependent

  1. 1
    CA 02394857 2005-01-19 THE EMBODIMENTS OF THE INVENTION FOR WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. An apparatus capable of quantitative magnetic measurement of sub-nanogram samples including combinations of analyte particles and magnetically susceptible particles, the samples arranged in defined patterns and disposed in a sample holder containing a plurality of samples, comprising: a magnetic field source to apply an alternating magnetic field to the samples, the magnetic field source defining a gap in which the sample holder may be disposed;a substantially flat magnetic field sensor to sense an induced magnetic moment from the samples and configured and arranged to substantially eliminate the contribution of the magnetic field source to the sensing, the magnetic field sensor having a sensing area substantially the same as the extent of each sample, the magnetic field sensor having an output to communicate output signals, the magnetic field sensor disposed substantially within the gap of the magnetic field source;and an electronic signal processor to process the output signals from the magnetic field sensor to provide a signal indicative of the quantity of the samples in the pattern.
  2. 38
    A method for quantitatively measuring analyte particles using magnetically susceptible particles, comprising:applying at least one sample pattern on a sample holder, the sample pattern including a plurality of bound complex particles, each bound complex particle including an analyte particle combined with a magnetically susceptible particle;creating a magnetic field;exciting the magnetic particles in the pattern with the magnetic field to cause oscillations of the magnetizations therein;sensing the fields generated by the oscillating magnetizations using a sensor having a sensing area substantially the same as the extent of the sample pattern;and creating a signal representative of the sensed field.
  3. 51
    A computer readable medium having computer readable codes embodied therein for quantitatively measuring analyte particles combined with magnetically susceptible particles which form bound complex samples, the computer readable codes comprising instructions for causing an apparatus to:create a magnetic field;excite the magnetically susceptible particles, that are bound with analyte particles and which form bound complex samples, and cause oscillations of the magnetizations therein;sense the fields generated by the oscillating magnetizations using a sensor having a sensing area substantially the same extent of said samples;and create a signal representative of the sensed fields. CA 02394857 2005-01-19
  4. 52
    An apparatus for quantitative measurement of analyte particles using magnetically susceptible particles, comprising:a sample holder including: an inlet for introduction of analyte particles;a lateral flow membrane through which the analyte particles may flow, the lateral flow membrane including a predefined area containing a plurality of bound magnetically susceptible particles, whereby flowing analyte particles may become bound to the bound magnetically susceptible particles;a magnetic field source to apply an alternating magnetic field to the samples in the predefined area;a magnetic field sensor having output signal conductors to communicate output signals;and an electronic signal processor to convert the output signals from the sensor to provide a signal indicative of the quantity of the samples in the predefined area.
  5. 53
    An apparatus for quantitative measurement of analyte particles using magnetically susceptible particles, comprising:a microfluidic sample holder including: an inlet channel for introduction of sample particles including analyte particles;and a sample analysis chamber connected to the inlet channel ;a magnetic field source to apply an alternating magnetic field to the samples in the sample analysis chamber;a magnetic field sensor having output signal conductors to communicate output signals;and an electronic signal processor to convert the output signal from the sensor to provide a signal indicative of the quantity of the samples in the sample analysis chamber. CA 02394857 2005-01-19
  6. 58
    An apparatus capable of quantitative magnetic measurement of sub-nanogram samples, comprising:a sample holder to contain a plurality of samples including patterns of combinations of analyte particles and magnetically susceptible particles;a magnetic field source to apply an alternating magnetic field to the samples, the magnetic field source defining a gap in which the sample holder may be disposed;a substantially flat magnetic field sensor to sense an induced magnetic moment from the samples and configured and arranged to substantially eliminate the contribution of the magnetic field source to the sensing, the magnetic field sensor having an output to communicate output signals, the magnetic field sensor disposed substantially within the gap of the magnetic field source;and an electronic signal processor to process the output signals from the magnetic field sensor to provide a signal indicative of the quantity of the samples in the pattern. CA 02394857 2005-01-19
  7. 59
    An apparatus capable of quantitative magnetic measurement of sub-nanogram samples comprising:a sample holder to contain an extent of a plurality of samples including combinations of analyte particles and magnetically susceptible particles;a magnetic field source to apply an alternating magnetic field to the samples, the magnetic field source defining a gap in which the sample holder may be disposed, the gap having a width of less than about 5 mm;a substantially flat magnetic field sensor to sense an induced magnetic moment from the samples and configured and arranged to substantially eliminate the contribution of are magnetic field source to the sensing, the magnetic field sensor having an output to communicate output signals, the magnetic field sensor disposed substantially within the gap of the magnetic field source and having a sensing area substantially the same as the extent of the plurality of samples and having a dimension of the sensing area greater than a spacing between the plurality of samples and the magnetic field sensor;and an electronic signal processor to process the output signals from the magnetic field sensor to provide a signal indicative of the quantity of the samples in the pattern.