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Title: SQUID detected NMR and MRI at ultralow fields

Inventors:
; ; ;
Issue Date:
Research Org.:
Univ. of California, Oakland, CA (United States)
Sponsoring Org.:
USDOE
OSTI Identifier:
1175333
Patent Number(s):
6885192
Application Number:
10/360,823
Assignee:
he Regents of the University of California (Oakland, CA)
Patent Classifications (CPCs):
G - PHYSICS G01 - MEASURING G01R - MEASURING ELECTRIC VARIABLES
DOE Contract Number:  
AC03-76SF00098
Resource Type:
Patent
Country of Publication:
United States
Language:
English
Subject:
47 OTHER INSTRUMENTATION

Citation Formats

Clarke, John, McDermott, Robert, Pines, Alexander, and Trabesinger, Andreas Heinz. SQUID detected NMR and MRI at ultralow fields. United States: N. p., 2005. Web.
Clarke, John, McDermott, Robert, Pines, Alexander, & Trabesinger, Andreas Heinz. SQUID detected NMR and MRI at ultralow fields. United States.
Clarke, John, McDermott, Robert, Pines, Alexander, and Trabesinger, Andreas Heinz. Tue . "SQUID detected NMR and MRI at ultralow fields". United States. https://www.osti.gov/servlets/purl/1175333.
@article{osti_1175333,
title = {SQUID detected NMR and MRI at ultralow fields},
author = {Clarke, John and McDermott, Robert and Pines, Alexander and Trabesinger, Andreas Heinz},
abstractNote = {},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2005},
month = {4}
}

Works referenced in this record:

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SQUIDs for nondestructive evaluation
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Nitrogen-14 SQUID NQR of L-Ala-L-His and of Serine
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High Tc superconducting asymmetric gradiometer for biomagnetic applications
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Ultrasensitive magnetic biosensor for homogeneous immunoassay
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Using a magnetometer to image a two‐dimensional current distribution
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High-T/sub c/ SQUIDs for low-field NMR and MRI of room temperature samples
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Transient Nuclear Induction Signals Associated with Pure Quadrupole Interactions
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Variable sample temperature scanning superconducting quantum interference device microscope
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Direct detection of low‐frequency NMR using a dc SQUID
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Nuclear magnetic resonance using a high temperature superconducting quantum interference device
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High-Tc super conducting quantum interference devices with slots or holes: Low 1/f noise in ambient magnetic fields
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Nuclear magnetism of liquid systems in the earth field range
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SQUID detected NMR and NQR
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The superconducting quantum interference device microstrip amplifier: Computer models
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Whole cortex, 64 channel SQUID biomagnetometer system
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Low‐temperature nuclear magnetic resonance with a dc SQUID amplifier
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Relaxation-Time Measurement and Imaging in the Earth′s Magnetic-Field
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NMR imaging in the earth's magnetic field
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Flux-bias stabilization scheme for a radio-frequency amplifier based on a superconducting quantum interference device
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Novel approaches to low-cost MRI
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Detection of 14N and 35Cl in Cocaine Base and Hydrochloride Using NQR, NMR, and SQUID Techniques
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Dynamic nuclear polarization at very low magnetic fields
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In vivo magnetic resonance vascular imaging using laser-polarized 3He microbubbles
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Superconducting quantum interference device as a near-quantum-limited amplifier at 0.5 GHz
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SQUID detected NMR of laser-polarized xenon at 4.2 K and at frequencies down to 200 Hz
journal, June 1997


NMR and MRI obtained with high transition temperature dc SQUIDs
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A 4.2 K receiver coil and SQUID amplifier used to improve the SNR of low-field magnetic resonance images of the human arm
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Broadband SQUID NMR with Room-Temperature Samples
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Radio-frequency amplifier with tenth-kelvin noise temperature based on a microstrip direct current superconducting quantum interference device
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Low-field magnetic resonance imaging with a high-Tc dc superconducting quantum interference device
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Low readout field magnetic resonance imaging of hyperpolarized xenon and water in a single system
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Radio-frequency amplifier based on a niobium dc superconducting quantum interference device with microstrip input coupling
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