Biological detector and method
Abstract
A biological detector includes a conduit for receiving a fluid containing one or more magnetic nanoparticle-labeled, biological objects to be detected and one or more permanent magnets or electromagnet for establishing a low magnetic field in which the conduit is disposed. A microcoil is disposed proximate the conduit for energization at a frequency that permits detection by NMR spectroscopy of whether the one or more magnetically-labeled biological objects is/are present in the fluid.
- Inventors:
- Issue Date:
- Research Org.:
- Sandia National Laboratories (SNL), Albuquerque, NM, and Livermore, CA (United States)
- Sponsoring Org.:
- USDOE
- OSTI Identifier:
- 1438400
- Patent Number(s):
- 9958516
- Application Number:
- 14/226,572
- Assignee:
- ABQMR, Inc. (Albuquerque, NM); Sandia Corporation (Albuquerque, NM); STC.UNM (Albuquerque, NM)
- Patent Classifications (CPCs):
-
G - PHYSICS G01 - MEASURING G01R - MEASURING ELECTRIC VARIABLES
G - PHYSICS G01 - MEASURING G01N - INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- DOE Contract Number:
- AC04-94AL85000
- Resource Type:
- Patent
- Resource Relation:
- Patent File Date: 2014 Mar 26
- Country of Publication:
- United States
- Language:
- English
- Subject:
- 59 BASIC BIOLOGICAL SCIENCES
Citation Formats
Sillerud, Laurel, Alam, Todd M., and McDowell, Andrew F. Biological detector and method. United States: N. p., 2018.
Web.
Sillerud, Laurel, Alam, Todd M., & McDowell, Andrew F. Biological detector and method. United States.
Sillerud, Laurel, Alam, Todd M., and McDowell, Andrew F. Tue .
"Biological detector and method". United States. https://www.osti.gov/servlets/purl/1438400.
@article{osti_1438400,
title = {Biological detector and method},
author = {Sillerud, Laurel and Alam, Todd M. and McDowell, Andrew F.},
abstractNote = {A biological detector includes a conduit for receiving a fluid containing one or more magnetic nanoparticle-labeled, biological objects to be detected and one or more permanent magnets or electromagnet for establishing a low magnetic field in which the conduit is disposed. A microcoil is disposed proximate the conduit for energization at a frequency that permits detection by NMR spectroscopy of whether the one or more magnetically-labeled biological objects is/are present in the fluid.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {2018},
month = {5}
}
Works referenced in this record:
Self-Assembly of Ordered, Robust, Three-Dimensional Gold Nanocrystal/Silica Arrays
journal, April 2004
- Fan, Hongyou; Yang, Kai; Boye, Daniel M.
- Science, Vol. 304, Issue 5670, p. 567-571
Solenoidal and planar microcoils for NMR spectroscopy
conference, January 2003
- Armenean, M.; Beuf, O.; Renaud, L.
- Proceedings of the 25th Annual International Conference of the IEEE Engineering in Medicine and Biology Society
Viral-Induced Self-Assembly of Magnetic Nanoparticles Allows the Detection of Viral Particles in Biological Media
journal, August 2003
- Perez, J. Manuel; Simeone, F. Joseph; Saeki, Yoshinaga
- Journal of the American Chemical Society, Vol. 125, Issue 34, p. 10192-10193
NMR radiofrequency microcoil design: electromagnetic simulation usefulness.
journal, April 2002
- Armenean, Mircea; Briguet, André; Saint-Jalmes, Hervé
- Comptes Rendus Biologies, Vol. 325, Issue 4, p. 457-463
1H-NMR Spectroscopy on the Nanoliter Scale for Static and Online Measurements
journal, November 1994
- Wu, Nian.; Peck, Timothy L.; Webb, Andrew G.
- Analytical Chemistry, Vol. 66, Issue 22
Towards nuclear magnetic resonance μ-spectroscopy and μ-imaging
journal, January 2004
- Bentum, P. J. M. van; Janssen, J. W. G.; Kentgens, A. P. M.
- The Analyst, Vol. 129, Issue 9, p. 793-803
The signal-to-noise ratio of the nuclear magnetic resonance experiment
journal, October 1976
- Hoult, D. I.; Richards, R. E.
- Journal of Magnetic Resonance (1969), Vol. 24, Issue 1, p. 71-85
A rapid bioassay for single bacterial cell quantitation using bioconjugated nanoparticles
journal, October 2004
- Zhao, X.; Hilliard, L. R.; Mechery, S. J.
- Proceedings of the National Academy of Sciences, Vol. 101, Issue 42, p. 15027-15032
Chip–NMR biosensor for detection and molecular analysis of cells
journal, July 2008
- Lee, Hakho; Sun, Eric; Ham, Donhee
- Nature Medicine, Vol. 14, Issue 8, p. 869-874
Development of low field nuclear magnetic resonance microcoils
journal, February 2005
- Goloshevsky, A. G.; Walton, J. H.; Shutov, M. V.
- Review of Scientific Instruments, Vol. 76, Issue 2, Article No. 024101
Design and testing of high sensitivity microreceiver coil apparatus for nuclear magnetic resonance and imaging
journal, April 2001
- Seeber, D. A.; Cooper, R. L.; Ciobanu, L.
- Review of Scientific Instruments, Vol. 72, Issue 4, p. 2171-2179
One-Step, Nanoparticle-Mediated Bacterial Detection with Magnetic Relaxation
journal, February 2007
- Kaittanis, Charalambos; Naser, Saleh A.; Perez, J. Manuel
- Nano Letters, Vol. 7, Issue 2, p. 380-383
RF microcoils patterned using microlithographic techniques for use as microsensors in NMR
conference, January 1993
- Peck, T. L.; LaValle, L.; Magini, R. L.
- Proceedings of the 15th Annual International Conference of the IEEE Engineering in Medicine and Biology Society
Miniature permanent magnet for table-top NMR
journal, January 2003
- Moresi, Giorgio; Magin, Richard
- Concepts in Magnetic Resonance, Vol. 19B, Issue 1, p. 35-43
Planar microcoil-based magnetic resonance imaging of cells
conference, January 2003
- Massin, C.; Eroglu, S.; Vincent, F.
- TRANSDUCERS '03. 12th International Conference on Solid-State Sensors, Actuators and Microsystems
Design and Analysis of Microcoils for NMR Microscopy
journal, August 1995
- Peck, T. L.; Magin, R. L.; Lauterbur, P. C.
- Journal of Magnetic Resonance, Series B, Vol. 108, Issue 2, p. 114-124
RF Microcoil Design for Practical NMR of Mass-Limited Samples
journal, July 1998
- Subramanian, R.; Lam, M. M.; Webb, A. G.
- Journal of Magnetic Resonance, Vol. 133, Issue 1, p. 227-231
Planar microcoil-based microfluidic NMR probes
journal, October 2003
- Massin, C.; Vincent, F.; Homsy, A.
- Journal of Magnetic Resonance, Vol. 164, Issue 2, p. 242-255
High-Resolution NMR Spectroscopy of Sample Volumes from 1 nL to 10 μL
journal, October 1999
- Lacey, Michael E.; Subramanian, Raju; Olson, Dean L.
- Chemical Reviews, Vol. 99, Issue 10, p. 3133-3152
Triaxial magnetic field gradient system for microcoil magnetic resonance imaging
journal, January 2000
- Seeber, D. A.; Hoftiezer, J. H.; Daniel, W. B.
- Review of Scientific Instruments, Vol. 71, Issue 11, Article No. 4263
Microfabrication of an electromagnetic power relay using SU-8 based UV-LIGA technology
journal, December 2004
- Williams, J. D.; Wang, W.
- Microsystem Technologies, Vol. 10, Issue 10, p. 699-705
Micro-spectrometer for NMR: analysis of small quantities in vitro
journal, March 2004
- Sorli, B.; Chateaux, J. F.; Pitaval, M.
- Measurement Science and Technology, Vol. 15, Issue 5, p. 877-880
1H NMR Detection of superparamagnetic nanoparticles at 1T using a microcoil and novel tuning circuit
journal, August 2006
- Sillerud, Laurel O.; McDowell, Andrew F.; Adolphi, Natalie L.
- Journal of Magnetic Resonance, Vol. 181, Issue 2, p. 181-190
Operating nanoliter scale NMR microcoils in a 1 tesla field
journal, September 2007
- McDowell, Andrew F.; Adolphi, Natalie L.
- Journal of Magnetic Resonance, Vol. 188, Issue 1, p. 74-82
Miniature magnetic resonance machines
journal, October 1997
- Magin, R. L.; Webb, A. G.; Peck, T. L.
- IEEE Spectrum, Vol. 34, Issue 10, p. 51-61
Multiparameter Magnetic Relaxation Switch Assays
journal, December 2007
- Taktak, Sonia; Sosnovik, David; Cima, Michael J.
- Analytical Chemistry, Vol. 79, Issue 23, p. 8863-8869