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PHYSICS
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Measuring instruments
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MEASURING ELECTRIC VARIABLES MEASURING MAGNETIC VARIABLES
Current Industry
G01R33/00
Arrangements or instruments for measuring magnetic variables
Sub Industries
G01R33/0005
Geometrical arrangement of magnetic sensor elements; Apparatus combining different magnetic sensor types
G01R33/0011
comprising means
G01R33/0017
Means for compensating offset magnetic fields or the magnetic flux to be measured; Means for generating calibration magnetic fields
G01R33/0023
Electronic aspects
G01R33/0029
Treating the measured signals
G01R33/0035
Calibration of single magnetic sensors
G01R33/0041
using feed-back or modulation techniques
G01R33/0047
Housings or packaging of magnetic sensors ; Holders
G01R33/0052
Manufacturing aspects; Manufacturing of single devices
G01R33/0058
using bistable elements
G01R33/0064
comprising means for performing simulations
G01R33/007
Environmental aspects
G01R33/0076
Protection
G01R33/0082
Compensation
G01R33/0088
use of bistable or switching devices
G01R33/0094
Sensor arrays
G01R33/02
Measuring direction or magnitude of magnetic fields or magnetic flux
G01R33/0206
Three-component magnetometers
G01R33/0213
using deviation of charged particles by the magnetic field
G01R33/022
Measuring gradient
G01R33/025
Compensating stray fields
G01R33/028
Electrodynamic magnetometers
G01R33/0283
in which a current or voltage is generated due to relative movement of conductor and magnetic field
G01R33/0286
comprising micro-electromechanical systems [MEMS]
G01R33/032
using magneto-optic devices
G01R33/0322
using the Faraday or Voigt effect
G01R33/0325
using the Kerr effect
G01R33/0327
with application of magnetostriction
G01R33/035
using superconductive devices
G01R33/0352
Superconductive magneto-resistances
G01R33/0354
SQUIDS
G01R33/0356
with flux feedback
G01R33/0358
coupling the flux to the SQUID
G01R33/038
using permanent magnets
G01R33/0385
in relation with magnetic force measurements
G01R33/04
using the flux-gate principle
G01R33/045
in single-, or multi-aperture elements
G01R33/05
in thin-film element
G01R33/06
using galvano-magnetic devices
G01R33/063
Magneto-impedance sensors; Nanocristallin sensors
G01R33/066
field-effect magnetic sensors
G01R33/07
Hall effect devices
G01R33/072
Constructional adaptation of the sensor to specific applications
G01R33/075
Hall devices configured for spinning current measurements
G01R33/077
Vertical Hall-effect devices
G01R33/09
Magnetoresistive devices
G01R33/091
Constructional adaptation of the sensor to specific applications
G01R33/093
using multilayer structures
G01R33/095
extraordinary magnetoresistance sensors
G01R33/096
anisotropic magnetoresistance sensors
G01R33/098
comprising tunnel junctions
G01R33/10
Plotting field distribution; Measuring field distribution
G01R33/12
Measuring magnetic properties of articles or specimens of solids or fluids
G01R33/1207
Testing individual magnetic storage devices
G01R33/1215
Measuring magnetisation; Particular magnetometers therefor
G01R33/1223
Measuring permeability
G01R33/123
Measuring loss due to hysteresis
G01R33/1238
Measuring super-conductive properties
G01R33/1246
Measuring critical current
G01R33/1253
Measuring galvano-magnetic properties
G01R33/1261
using levitation techniques
G01R33/1269
of molecules labeled with magnetic beads
G01R33/1276
of magnetic particles
G01R33/1284
Spin resolved measurements; Influencing spins during measurements
G01R33/1292
Measuring domain wall position or domain wall motion
G01R33/14
Measuring or plotting hysteresis curves
G01R33/16
Measuring susceptibility
G01R33/18
Measuring magnetostrictive properties
G01R33/20
involving magnetic resonance
G01R33/24
for measuring direction or magnitude of magnetic fields or magnetic flux
G01R33/243
Spatial mapping of the polarizing magnetic field
G01R33/246
Spatial mapping of the RF magnetic field B1
G01R33/26
using optical pumping
G01R33/28
Details of apparatus provided for in groups G01R33/44 - G01R33/64
G01R33/281
Means for the use of in vitro contrast agents
G01R33/282
Means specially adapted for hyperpolarisation or for hyperpolarised contrast agents
G01R33/283
Intercom or optical viewing arrangements, structurally associated with NMR apparatus
G01R33/285
Invasive instruments
G01R33/286
involving passive visualization of interventional instruments
G01R33/287
involving active visualization of interventional instruments
G01R33/288
Provisions within MR facilities for enhancing safety during MR
G01R33/30
Sample handling arrangements
G01R33/302
Miniaturized sample handling arrangements for sampling small quantities
G01R33/305
specially adapted for high-pressure applications
G01R33/307
specially adapted for moving the sample relative to the MR system
G01R33/31
Temperature control thereof
G01R33/32
Excitation or detection systems
G01R33/323
Detection of MR without the use of RF or microwaves
G01R33/326
involving a SQUID
G01R33/34
Constructional details
G01R33/34007
Manufacture of RF coils
G01R33/34015
Temperature-controlled RF coils
G01R33/34023
Superconducting RF coils
G01R33/3403
Means for cooling of the RF coils
G01R33/34038
Loopless coils
G01R33/34046
Volume type coils
G01R33/34053
Solenoid coils; Toroidal coils
G01R33/34061
Helmholtz coils
G01R33/34069
Saddle coils
G01R33/34076
Birdcage coils
G01R33/34084
implantable coils or coils being geometrically adaptable to the sample
G01R33/34092
RF coils specially adapted for NMR spectrometers
G01R33/341
comprising surface coils
G01R33/3415
comprising arrays of sub-coils
G01R33/343
of slotted-tube or loop-gap type
G01R33/345
of waveguide type
G01R33/3453
Transverse electromagnetic [TEM] coils
G01R33/3456
Stripline resonators
G01R33/36
Electrical details
G01R33/3607
RF waveform generators
G01R33/3614
RF power amplifiers
G01R33/3621
NMR receivers or demodulators
G01R33/3628
Tuning/matching of the transmit/receive coil
G01R33/3635
Multi-frequency operation
G01R33/3642
Mutual coupling or decoupling of multiple coils
G01R33/365
Decoupling of multiple RF coils wherein the multiple RF coils have the same function in MR
G01R33/3657
Decoupling of multiple RF coils wherein the multiple RF coils do not have the same function in MR
G01R33/3664
Switching for purposes other than coil coupling or decoupling
G01R33/3671
involving modulation of the quality factor of the RF coil
G01R33/3678
involving quadrature drive or detection
G01R33/3685
Means for reducing sheath currents
G01R33/3692
involving signal transmission without using electrically conductive connections
G01R33/38
Systems for generation, homogenisation or stabilisation of the main or gradient magnetic field
G01R33/3802
Manufacture or installation of magnet assemblies; Additional hardware for transportation or installation of the magnet assembly or for providing mechanical support to components of the magnet assembly
G01R33/3804
Additional hardware for cooling or heating of the magnet assembly, for housing a cooled or heated part of the magnet assembly or for temperature control of the magnet assembly
G01R33/3806
Open magnet assemblies for improved access to the sample
G01R33/3808
Magnet assemblies for single-sided MR wherein the magnet assembly is located on one side of a subject only; Magnet assemblies for inside-out MR
G01R33/381
using electromagnets
G01R33/3815
with superconducting coils
G01R33/383
using permanent magnets
G01R33/385
using gradient magnetic field coils
G01R33/3852
Gradient amplifiers; means for controlling the application of a gradient magnetic field to the sample
G01R33/3854
means for active and/or passive vibration damping or acoustical noise suppression in gradient magnet coil systems
G01R33/3856
Means for cooling the gradient coils or thermal shielding of the gradient coils
G01R33/3858
Manufacture and installation of gradient coils, means for providing mechanical support to parts of the gradient-coil assembly
G01R33/387
Compensation of inhomogeneities
G01R33/3873
using ferromagnetic bodies; Passive shimming
G01R33/3875
using correction coil assemblies
G01R33/389
Field stabilisation
G01R33/42
Screening
G01R33/421
of main or gradient magnetic field
G01R33/4215
of the gradient magnetic field
G01R33/422
of the radio frequency field
G01R33/44
using nuclear magnetic resonance [NMR]
G01R33/441
Nuclear Quadrupole Resonance [NQR] Spectroscopy and Imaging
G01R33/443
Assessment of an electric or a magnetic field
G01R33/445
MR involving a non-standard magnetic field B0
G01R33/446
Multifrequency selective RF pulses
G01R33/448
Relaxometry
G01R33/46
NMR spectroscopy
G01R33/4608
RF excitation sequences for enhanced detection
G01R33/4616
using specific RF pulses or specific modulation schemes
G01R33/4625
Processing of acquired signals
G01R33/4633
Sequences for multi-dimensional NMR
G01R33/4641
Sequences for NMR spectroscopy of samples with ultrashort relaxation times such as solid samples
G01R33/465
applied to biological material
G01R33/48
NMR imaging systems
G01R33/4802
Travelling-wave MR
G01R33/4804
Spatially selective measurement of temperature or pH
G01R33/4806
Functional imaging of brain activation
G01R33/4808
Multimodal MR
G01R33/481
MR combined with positron emission tomography [PET] or single photon emission computed tomography [SPECT]
G01R33/4812
MR combined with X-ray or computed tomography [CT]
G01R33/4814
MR combined with ultrasound
G01R33/4816
NMR imaging of samples with ultrashort relaxation times such as solid samples
G01R33/4818
MR characterised by data acquisition along a specific k-space trajectory or by the temporal order of k-space coverage
G01R33/482
using a Cartesian trajectory
G01R33/4822
in three dimensions
G01R33/4824
using a non-Cartesian trajectory
G01R33/4826
in three dimensions
G01R33/4828
Resolving the MR signals of different chemical species
G01R33/483
with selection of signals or spectra from particular regions of the volume
G01R33/4831
using B1 gradients
G01R33/4833
using spatially selective excitation of the volume of interest
G01R33/4835
of multiple slices
G01R33/4836
using an RF pulse being spatially selective in more than one spatial dimension
G01R33/4838
using spatially selective suppression or saturation of MR signals
G01R33/485
based on chemical shift information CSI or spectroscopic imaging
G01R33/50
based on the determination of relaxation times
G01R33/54
Signal processing systems
G01R33/543
Control of the operation of the MR system
G01R33/546
Interface between the MR system and the user
G01R33/56
Image enhancement or correction
G01R33/5601
involving use of a contrast agent for contrast manipulation
G01R33/5602
by filtering or weighting based on different relaxation times within the sample
G01R33/5604
Microscopy; Zooming
G01R33/5605
by transferring coherence or polarization from a spin species to another
G01R33/5607
by reducing the NMR signal of a particular spin species
G01R33/5608
Data processing and visualization specially adapted for MR
G01R33/561
by reduction of the scanning time, i.e. fast acquiring systems
G01R33/5611
Parallel magnetic resonance imaging
G01R33/5612
Parallel RF transmission
G01R33/5613
Generating steady state signals
G01R33/5614
using a fully balanced steady-state free precession [bSSFP] pulse sequence
G01R33/5615
Echo train techniques involving acquiring plural, differently encoded, echo signals after one RF excitation
G01R33/5616
using gradient refocusing
G01R33/5617
using RF refocusing
G01R33/5618
using both RF and gradient refocusing
G01R33/5619
by temporal sharing of data
G01R33/563
of moving material
G01R33/56308
Characterization of motion or flow; Dynamic imaging
G01R33/56316
involving phase contrast techniques
G01R33/56325
Cine imaging
G01R33/56333
Involving spatial modulation of the magnetization within an imaged region
G01R33/56341
Diffusion imaging
G01R33/5635
Angiography
G01R33/56358
Elastography
G01R33/56366
Perfusion imaging
G01R33/56375
Intentional motion of the sample during MR
G01R33/56383
involving motion of the sample as a whole
G01R33/56391
involving motion of a part of the sample with respect to another part of the sample
G01R33/565
Correction of image distortions
G01R33/56509
due to motion, displacement or flow
G01R33/56518
due to eddy currents
G01R33/56527
due to chemical shift effects
G01R33/56536
due to magnetic susceptibility variations
G01R33/56545
caused by finite or discrete sampling
G01R33/56554
caused by acquiring plural, differently encoded echo signals after one RF excitation
G01R33/56563
caused by a distortion of the main magnetic field B0
G01R33/56572
caused by a distortion of a gradient magnetic field
G01R33/56581
due to Maxwell fields
G01R33/5659
caused by a distortion of the RF magnetic field
G01R33/567
gated by physiological signals i.e. synchronization of acquired MR data with periodical motion of an object of interest
G01R33/5673
Gating or triggering based on a physiological signal other than an MR signal
G01R33/5676
Gating or triggering based on an MR signal
G01R33/58
Calibration of imaging systems
G01R33/583
Calibration of signal excitation or detection systems
G01R33/586
for optimal flip angle of RF pulses
G01R33/60
using electron paramagnetic resonance
G01R33/62
using double resonance
G01R33/64
using cyclotron resonance
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Issue date
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Issue date
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Issue date
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Publication number
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Publication date
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G06 - COMPUTING CALCULATING COUNTING
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Publication number
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Publication date
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Publication date
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G01 - MEASURING TESTING
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Publication date
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Publication date
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THE UNIVERSITY OF ADELAIDE
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G01 - MEASURING TESTING
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Systems and methods for fast quantitative NMR spectrum acquisition
Publication number
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Publication date
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Bruker BioSpin GmbH
Christian Fischer
G01 - MEASURING TESTING
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