Abstract:
The present invention provides microcoil magnetic resonance based modules, detection devices, and methods for their use. In particular, the methods concern the detection of a target in a sample fluid, comprising magnetically labeling targets of interest in a sample fluid and subjecting the sample fluid to an NMR analysis.
Abstract:
NMR technology disclosed herein, such as an NMR apparatus or an NMR method, for example, may be useful for purposes described herein, such as determining presence or absence of magnetic resonance from a sample, for example. Methods pertaining to such NMR technology include methods of designing or constructing NMR apparatus, methods of using NMR apparatus, methods of employing data obtained from NMR apparatus, and/or the like. Various apparatus and methods for detection of magnetic resonance in sample material are disclosed herein. Additionally, various apparatus and methods for usefully employing magnetic resonance data are disclosed herein.
Abstract:
The present invention provides resonance circuits, detection devices incorporating such circuits, and methods for their' design, construction, and use. The resonance circuits contain. a closely wound microcoil and an auxiliary inductor coil electrically connected- in series to the microcoil. The resonance circuits are used for the detection of NMR signals.
Abstract:
The present invention provides resonance circuits, detection devices incorporating such circuits, and methods for their design, construction, and use.
Abstract:
The present invention provides microcoil-based detectors for detection of an analyte in a fluid, and methods for their use. In particular, the detectors contain a permanent magnet (206) and a gradient magnetic field generator.