Publikationen von K Buckenmaier
Alle Typen
Zeitschriftenartikel (32)
1.
Zeitschriftenartikel
Indirect Zero-Field Nuclear Magnetic Resonance Spectroscopy. Analytical Chemistry 97 (32), S. 17336 - 17344 (2025)
2.
Zeitschriftenartikel
Easy scalable, low-cost open-source magnetic field detection system for evaluating low-field MRI magnets using a motion-tracked robot. Magnetic Resonance Materials in Physics, Biology and Medicine 38 (4), S. 695 - 714 (2025)
3.
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Correction: Easy scalable, low-cost open-source magnetic field detection system for evaluating low-field MRI magnets using a motion-tracked robot. Magnetic Resonance Materials in Physics, Biology and Medicine 38 (4), S. 715 - 716 (2025)
4.
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Analysis of chemical exchange in iridium N-heterocyclic carbene complexes using heteronuclear parahydrogen-enhanced NMR. Chemical Communications 7 (1), 286 (2024)
5.
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Fluorescence Quenching for Determination of Catalyst Concentration in the Parahydrogen-Induced Polarization Method SABRE. ChemBioChem: A European Journal of Chemical Biology 8 (11), e202400106 (2024)
6.
Zeitschriftenartikel
SABRE-hyperpolarization dynamics of [1-13C]pyruvate monitored by in situ zero- to ultra-low field NMR. Journal of Magnetic Resonance Open 19, 100149 (2024)
7.
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Zero to ultralow magnetic field NMR of [1-13 C] pyruvate and [2-13 C] pyruvate enabled by SQUID sensors and hyperpolarization. Physical Review B 109, 184443 (2024)
8.
Zeitschriftenartikel
Contrast Agents Based on Human Serum Albumin and Nitroxides for 1H-MRI and Overhauser-Enhanced MRI. International Journal of Molecular Sciences 25 (7), 4041 (2024)
9.
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13C MRI of hyperpolarized pyruvate at 120 µT. Scientific Reports 14 (1), 4468 (2024)
10.
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Accelerated 2D Cartesian MRI with an 8-channel local B0 coil array combined with parallel imaging. Magnetic Resonance in Medicine 91 (2), S. 443 - 465 (2024)
11.
Zeitschriftenartikel
LIGHT-SABRE Hyperpolarizes 1-13C-Pyruvate Continuously without Magnetic Field Cycling. The Journal of Physical Chemistry C 127 (14), S. 6744 - 6753 (2023)
12.
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Instrumentation for Hydrogenative Parahydrogen-Based Hyperpolarization Techniques. Analytical Chemistry 94 (1), S. 479 - 502 (2022)
13.
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Coherent evolution of signal amplification by reversible exchange in two alternating fields (alt-SABRE). ChemPhysChem 22 (23), S. 2381 - 2386 (2021)
14.
Zeitschriftenartikel
The effects of nitroxide structure upon 1H Overhauser dynamic nuclear polarization efficacy at ultralow-field. The Journal of Chemical Physics 155 (14), 144203, S. 1 - 11 (2021)
15.
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Erratum: "The effects of nitroxide structure upon 1 H Overhauser dynamic nuclear polarization efficacy at ultralow-field". The Journal of Chemical Physics 156 (8), 089901, S. 1 - 3 (2021)
16.
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Simultaneous observation of high order multiple quantum coherences at ultralow magnetic fields. (eingereicht)
17.
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Feasibility of Functional MRI at Ultralow Magnetic Field via Changes in Cerebral Blood Volume. NeuroImage 186, S. 185 - 191 (2019)
18.
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Mutual benefit achieved by combining ultralow-field magnetic resonance and hyperpolarizing techniques. Review of Scientific Instruments 89 (12), 125103, S. 1 - 12 (2018)
19.
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Parahydrogen-based Hyperpolarization for Biomedicine. Angewandte Chemie, International Edition in English 57 (35), S. 11140 - 11162 (2018)
20.
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Parawasserstoff-basierte Hyperpolarisierung für die Biomedizin. Angewandte Chemie 130 (35), S. 11310 - 11333 (2018)