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Magnetic Resonance Insights
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October 21, 2015
The Interface Between Iron Metabolism and Gene-Based Iron Contrast for MRI
Donna E Goldhawk, Neil Gelman, Anindita Sengupta, et al.
Wiley Interdisciplinary Reviews. Nanomedicine and Nanobiotechnology
|
March 13, 2012
Using the magnetosome to model effective gene-based contrast for magnetic resonance imaging
Donna E Goldhawk, Roja Rohani, Anindita Sengupta, et al.
Mechanisms of Development
|
September 3, 2002
Expression analysis of a novel p75(NTR) signaling protein, which regulates cell cycle progression and apoptosis
Stephen E Kendall, Donna E Goldhawk, Chris Kubu, et al.
Molecular Imaging
|
December 6, 2015
Investigating the Relationship between Transverse Relaxation Rate (R2) and Interecho Time in MagA-Expressing, Iron-Labeled Cells
Casey Y Lee, R Terry Thompson, Frank S Prato, et al.
Biosensors
|
December 24, 2025
Cellular Distribution and Motion of Essential Magnetosome Proteins Expressed in Mammalian Cells
Qin Sun, Cécile Fradin, Moeiz Ahmed, et al.
Frontiers in Microbiology
|
February 20, 2014
Biophysical features of MagA expression in mammalian cells: implications for MRI contrast
Anindita Sengupta, Karina Quiaoit, R Terry Thompson, et al.
International Journal of Molecular Sciences
|
February 25, 2023
Monocyte MRI Relaxation Rates Are Regulated by Extracellular Iron and Hepcidin
Praveen S B Dassanayake, Rahil Prajapati, Neil Gelman, et al.
Nuclear Medicine and Biology
|
November 1, 2025
Radiolabelling bacteria with <sup>89</sup>Zr-DBN for PET/MRI: comparing [<sup>89</sup>Zr]Zr oxalate and [<sup>89</sup>Zr]Zr phosphate
Diksha, Sarah C Donnelly, Mojmir Suchy, et al.
Scientific Reports
|
February 22, 2020
Hepcidin-mediated Iron Regulation in P19 Cells is Detectable by Magnetic Resonance Imaging
Kobra Alizadeh, Qin Sun, Tabitha McGuire, et al.
Scientific Reports
|
November 2, 2024
Essential magnetosome proteins MamI and MamL from magnetotactic bacteria interact in mammalian cells
Qin Sun, Liu Yu, Sarah C Donnelly, et al.
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Search research articles
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Showing results (1-10 of 16) with videos related to
Sort By:
Page
of 2
Magnetic Resonance Insights
|
October 21, 2015
The Interface Between Iron Metabolism and Gene-Based Iron Contrast for MRI
Donna E Goldhawk, Neil Gelman, Anindita Sengupta, et al.
Wiley Interdisciplinary Reviews. Nanomedicine and Nanobiotechnology
|
March 13, 2012
Using the magnetosome to model effective gene-based contrast for magnetic resonance imaging
Donna E Goldhawk, Roja Rohani, Anindita Sengupta, et al.
Mechanisms of Development
|
September 3, 2002
Expression analysis of a novel p75(NTR) signaling protein, which regulates cell cycle progression and apoptosis
Stephen E Kendall, Donna E Goldhawk, Chris Kubu, et al.
Molecular Imaging
|
December 6, 2015
Investigating the Relationship between Transverse Relaxation Rate (R2) and Interecho Time in MagA-Expressing, Iron-Labeled Cells
Casey Y Lee, R Terry Thompson, Frank S Prato, et al.
Biosensors
|
December 24, 2025
Cellular Distribution and Motion of Essential Magnetosome Proteins Expressed in Mammalian Cells
Qin Sun, Cécile Fradin, Moeiz Ahmed, et al.
Frontiers in Microbiology
|
February 20, 2014
Biophysical features of MagA expression in mammalian cells: implications for MRI contrast
Anindita Sengupta, Karina Quiaoit, R Terry Thompson, et al.
International Journal of Molecular Sciences
|
February 25, 2023
Monocyte MRI Relaxation Rates Are Regulated by Extracellular Iron and Hepcidin
Praveen S B Dassanayake, Rahil Prajapati, Neil Gelman, et al.
Nuclear Medicine and Biology
|
November 1, 2025
Radiolabelling bacteria with <sup>89</sup>Zr-DBN for PET/MRI: comparing [<sup>89</sup>Zr]Zr oxalate and [<sup>89</sup>Zr]Zr phosphate
Diksha, Sarah C Donnelly, Mojmir Suchy, et al.
Scientific Reports
|
February 22, 2020
Hepcidin-mediated Iron Regulation in P19 Cells is Detectable by Magnetic Resonance Imaging
Kobra Alizadeh, Qin Sun, Tabitha McGuire, et al.
Scientific Reports
|
November 2, 2024
Essential magnetosome proteins MamI and MamL from magnetotactic bacteria interact in mammalian cells
Qin Sun, Liu Yu, Sarah C Donnelly, et al.
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of 2