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1.
J Magn Reson ; 278: 80-87, 2017 05.
Article in English | MEDLINE | ID: mdl-28388497

ABSTRACT

A radio-frequency coil with adjustable distance has been developed and tested for in-situ examination of growing plants. The Helmholtz-based coil design reduces laborious tuning and matching efforts encountered with solenoids wound around a growing stem or branch. Relaxation experiments were performed on tomato plants and winter wheat under controlled light irradiation. Changes in signal amplitude and in relaxation times T2 were recorded over day and night cycles. Peaks in distributions of relaxation times were attributed to different tissue components of two different plants.


Subject(s)
Nuclear Magnetic Resonance, Biomolecular/methods , Plants/anatomy & histology , Radio Waves , Circadian Rhythm , Light , Solanum lycopersicum/anatomy & histology , Solanum lycopersicum/radiation effects , Magnets , Nuclear Magnetic Resonance, Biomolecular/instrumentation , Plant Leaves/anatomy & histology , Plant Stems/anatomy & histology , Triticum/anatomy & histology , Triticum/radiation effects , Water/chemistry
2.
Chemistry ; 21(40): 13971-82, 2015 Sep 28.
Article in English | MEDLINE | ID: mdl-26272697

ABSTRACT

Complete miscibility of the intermetallic phases (IPs) SrGa2 and BaGa2 forming the solid solution Sr(1-x)Ba(x)Ga2 is shown by means of X-ray diffraction, thermoanalytical and metallographic studies. Regarding the distances of Sr/Ba sites versus substitution degree, a model of isolated substitution centres (ISC) for up to 10% cation substitution is explored to study the influence on the Ga bonding situation. A combined application of NMR spectroscopy and quantum mechanical (QM) calculations proves the electric field gradient (EFG) to be a sensitive measure of different bonding situations. The experimental resolution is boosted by orientation-dependent NMR on magnetically aligned powder samples, revealing in first approximation two different Ga species in the ISC regimes. EFG calculations using superlattice structures within periodic boundary conditions are in fair agreement with the NMR spectroscopy data and are discussed in detail regarding their application on disordered IPs.

3.
J Magn Reson ; 254: 10-8, 2015 May.
Article in English | MEDLINE | ID: mdl-25771358

ABSTRACT

Nowadays most low-field NMR sensors, such as the single-sided Profile NMR-MOUSE®, still suffer from poor sensitivity, either resulting from low magnetic field strengths and correspondingly low NMR frequencies, or lack of sensitivity. Generally, micro-coils can improve sensitivity, but due to their small size, and thus small inductance, they are mainly used for high-field NMR. Their main application field is parallel imaging, where those coils are typically assembled to receive-only coil-arrays and increase the field-of-view. Prominent signal combination techniques such as GRAPPA and SENSE are used to combine the spatially independent NMR signals to images in order to increase acquisition speed. A decisive disadvantage of today's single-sided NMR probes is the limited accessibility for NMR imaging. Although it is possible to use flat gradient coils on top of the NMR-MOUSE® to apply imaging techniques, such images can only be recorded with very long acquisition times, excluding the NMR-MOUSE® for lateral imaging of time-dependent processes. In this study sensitivity improved micro-structured RF coils, optimized for low frequencies, and correspondingly arrays of these coils, were employed to improve sensitivity and gave access to lateral spatial resolution within the sensitive plane at several observation points at the same time. Recently developed three- and four-coil arrays were combined with a Profile NMR-MOUSE® and characterized in terms of coil coupling, noise correlation and signal combination. The three-coil array was used for lateral imaging of moisture transport in travertine rock samples and to study the one-dimensional drying of paint.


Subject(s)
Echo-Planar Imaging/instrumentation , Echo-Planar Imaging/methods , Adhesives/chemistry , Electromagnetic Fields , Equipment Design , Image Processing, Computer-Assisted , Minerals/chemistry , Paint/analysis
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