フォロー
Sergei Obruchkov
Sergei Obruchkov
Senior Engineer Robinson Research Institute
確認したメール アドレス: vuw.ac.nz
タイトル
引用先
引用先
Determining pore length scales and pore surface relaxivity of rock cores by internal magnetic fields modulation at 2 MHz NMR
H Liu, MN d’Eurydice, S Obruchkov, P Galvosas
Journal of Magnetic Resonance 246, 110-118, 2014
622014
Portable low-cost MRI system based on permanent magnets/magnet arrays
SY Huang, ZH Ren, S Obruchkov, JI Gong, R Dykstra, W Yu
arXiv preprint arXiv:1812.10474, 2018
322018
A low-field portable magnetic resonance imaging system for head imaging
ZH Ren, S Obruchkov, DW Lu, R Dykstra, SY Huang
2017 Progress in Electromagnetics Research Symposium-Fall (PIERS-FALL), 3042 …, 2017
312017
Bone volume–to–total volume ratio measured in trabecular bone by single‐sided NMR devices
L Brizi, M Barbieri, F Baruffaldi, V Bortolotti, C Fersini, H Liu, ...
Magnetic resonance in medicine 79 (1), 501-510, 2018
262018
Pulsed second order field NMR for real time PGSE and single-shot surface to volume ratio measurements
WC Kittler, S Obruchkov, P Galvosas, MW Hunter
Journal of Magnetic Resonance 247, 42-49, 2014
152014
Phosphorus magnetic resonance spectroscopic imaging using flyback echo planar readout trajectories
A Santos-Díaz, SI Obruchkov, RF Schulte, MD Noseworthy
Magnetic Resonance Materials in Physics, Biology and Medicine 31, 553-564, 2018
122018
Single-sided NMR for the diagnosis of osteoporosis: Diffusion weighted pulse sequences for the estimation of trabecular bone volume fraction in the presence of muscle tissue
M Barbieri, L Brizi, V Bortolotti, P Fantazzini, MN d’Eurydice, S Obruchkov, ...
Microporous and Mesoporous Materials 269, 166-170, 2018
112018
A compact Class D RF power amplifier for mobile nuclear magnetic resonance systems
J Zhen, R Dykstra, C Eccles, G Gouws, S Obruchkov
Review of Scientific Instruments 88 (7), 2017
102017
Characterizing fluid presence and transport in rock cores at reservoir-like conditions via spatially resolved NMR relaxation/diffusion maps
H Liu, M Hunter, S Obruchkov, E McCarney, M Robison, R Dykstra, ...
SCA2015-013, 1-12, 2015
102015
Mobile low field magnetic resonance hardware development
J Zhen, C Dykstra, G Gouws, S Obruchkov, R Dykstra
Journal of Magnetic Resonance 322, 106852, 2021
72021
Single crystal growth of alloys using the traveling solvent method
D Labrie, AE George, M Jamieson, S Obruchkov, JP Healey, BE Paton, ...
Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films 22 (3 …, 2004
62004
Portable Low-cost MRI System based on Permanent Magnets
SY Huang, ZH Ren, S Obruchkov, J Gong, R Dykstra, W Yu
Magnet Arrays, 2018
52018
echo planar spectroscopic imaging and 31P in vivo spectroscopy
SI Obruchkov
52011
Oxygen saturation-dependent effects on blood transverse relaxation at low fields
DG Thomas, P Galvosas, YC Tzeng, FG Harrison, MJ Berry, PD Teal, ...
Magnetic Resonance Materials in Physics, Biology and Medicine 35 (5), 805-815, 2022
42022
1H-MR Imaging of the Lungs at 3.0 T
SI Obruchkov, MD Noseworthy
Quantitative Imaging in Medicine and Surgery 6 (1), 67, 2016
42016
The technology and performance of 4D ultrasound
S Obruchkov
Critical Reviews™ in Biomedical Engineering 36 (4), 2008
42008
Homogeneity of Ge1-xSix alloys (x≤0.30) grown by the travelling solvent method
D Labrie, AE George, M Jamieson, S Obruchkov, JP Healey, BE Paton, ...
International Journal of Materials and Product Technology 22 (1-3), 105-121, 2005
42005
Single sided magnet system for relaxometry and diffusion measurement
D Thomas, P Galvosas, P Teal, FG Harrison, M Berry, Y Tzeng, ...
Proceedings of the 28th ISMRM Annual Meeting, Honolulu, HI, USA, 18-24, 2020
32020
Pore length scales and pore surface relaxivity of sandstone determined by internal magnetic fields modulation at 2 MHz NMR
H Liu, MN D’Eurydice, S Obruchkov, P Galvosas
32014
Single-sided magnet system for quantitative MR relaxometry and preclinical in-vivo monitoring
DG Thomas, YC Tzeng, P Galvosas, FG Harrison, MJ Berry, PD Teal, ...
IEEE Transactions on Biomedical Engineering 70 (2), 671-680, 2022
22022
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