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H Michael Gach

Showing results (1-10 of 80) with videos related to

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Medical Physics|February 7, 2019
Technical Note: T<sub>1</sub> and T<sub>2</sub> and complex permittivities of mineral oil, silicone oil, and glycerol at 0.35, 1.5, and 3 TH Michael Gach
Bioelectromagnetics|July 8, 2010
Radiofrequency interaction with conductive colloids: permittivity and electrical conductivity of single-wall carbon nanotubes in salineH Michael Gach, Tejas Nair
Magnetic Resonance in Medicine|September 25, 2004
Simple model of double adiabatic inversion (DAI) efficiencyH Michael Gach, Weiying Dai
Bioelectromagnetics|July 20, 2011
Comparison of complex permittivities of isotonic colloids containing single-wall carbon nanotubes of varying chiralityTejas Nair, James T Symanowski, H Michael Gach
Medical Physics|May 31, 2020
B<sub>0</sub> field homogeneity recommendations, specifications, and measurement units for MRI in radiation therapyH Michael Gach, Austen N Curcuru, Sasa Mutic, et al.
Medical Physics|September 14, 2021
Technical Note: Effects of rotating gantry on magnetic field and eddy currents in 0.35 T MRI-guided radiotherapy (MR-IGRT) systemH Michael Gach, Austen N Curcuru, Taeho Kim, et al.
Medical Physics|July 30, 2022
Real-time B<sub>0</sub> compensation during gantry rotation in a 0.35-T MRI-LinacAusten N Curcuru, Taeho Kim, Deshan Yang, et al.
Physics in Medicine and Biology|January 7, 2021
GroupRegNet: a groupwise one-shot deep learning-based 4D image registration methodYunlu Zhang, Xue Wu, H Michael Gach, et al.
Medical Physics|August 4, 2019
Technical Note: Real-time 3D MRI in the presence of motion for MRI-guided radiotherapy: 3D Dynamic keyhole imaging with super-resolutionTaeho Kim, Justin C Park, H Michael Gach, et al.
Magnetic Resonance in Medicine|April 12, 2002
Quantitative analysis of adiabatic fast passage for steady laminar and turbulent flowsH Michael Gach, Anthony W Kam, Eric D Reid, et al.
Pageof 8

Showing results (1-10 of 80) with videos related to

Sort By:
Pageof 8
Medical Physics|February 7, 2019
Technical Note: T<sub>1</sub> and T<sub>2</sub> and complex permittivities of mineral oil, silicone oil, and glycerol at 0.35, 1.5, and 3 TH Michael Gach
Bioelectromagnetics|July 8, 2010
Radiofrequency interaction with conductive colloids: permittivity and electrical conductivity of single-wall carbon nanotubes in salineH Michael Gach, Tejas Nair
Magnetic Resonance in Medicine|September 25, 2004
Simple model of double adiabatic inversion (DAI) efficiencyH Michael Gach, Weiying Dai
Bioelectromagnetics|July 20, 2011
Comparison of complex permittivities of isotonic colloids containing single-wall carbon nanotubes of varying chiralityTejas Nair, James T Symanowski, H Michael Gach
Medical Physics|May 31, 2020
B<sub>0</sub> field homogeneity recommendations, specifications, and measurement units for MRI in radiation therapyH Michael Gach, Austen N Curcuru, Sasa Mutic, et al.
Medical Physics|September 14, 2021
Technical Note: Effects of rotating gantry on magnetic field and eddy currents in 0.35 T MRI-guided radiotherapy (MR-IGRT) systemH Michael Gach, Austen N Curcuru, Taeho Kim, et al.
Medical Physics|July 30, 2022
Real-time B<sub>0</sub> compensation during gantry rotation in a 0.35-T MRI-LinacAusten N Curcuru, Taeho Kim, Deshan Yang, et al.
Physics in Medicine and Biology|January 7, 2021
GroupRegNet: a groupwise one-shot deep learning-based 4D image registration methodYunlu Zhang, Xue Wu, H Michael Gach, et al.
Medical Physics|August 4, 2019
Technical Note: Real-time 3D MRI in the presence of motion for MRI-guided radiotherapy: 3D Dynamic keyhole imaging with super-resolutionTaeho Kim, Justin C Park, H Michael Gach, et al.
Magnetic Resonance in Medicine|April 12, 2002
Quantitative analysis of adiabatic fast passage for steady laminar and turbulent flowsH Michael Gach, Anthony W Kam, Eric D Reid, et al.
Pageof 8