← back to search

Shane Harstad

Virginia Commonwealth University · US
🔎 Find collaborators in Atomic and Molecular Physics, and Optics · Electronic, Optical and Magnetic Materials →
Search 5.9M scientists by topic, h-index, country & funding — free.
Area of research
Atomic and Molecular Physics, and Optics · Electronic, Optical and Magnetic Materials
Research interest
Research topics from publications: T1, T2 and T2* relaxations in MRI based on Gd5Si4 nanoparticles of varying sizes; Effect of Gd5Si4 Ferromagnetic Nanoparticle Sizes on T1, T2 and T2* Relaxation in MRI. Representative work: Our previous study has shown that ferromagnetic gadolinium silicide (Gd5Si4) nanoparticles (NP) could be potentially efficient T2 CA for MRI with significantly reduced echo time (TE) compared to Superparamagnetic Iron Oxide Nanoparticles (SPION) [1]. T2 CA are defined by their relaxivity, r2, which is dependent on both the saturation magnetization (Ms) and size of the NPs [1,2,4]. In this study, effect of Gd5Si4 NPs of varying sizes and concentrations are investigated on T1, T2 and T2* (effective/observed T2) relaxations times. Gd5Si4 NPs categorized into three fractions (named S1, S2 and S3) based on average sizes of 586 nm, 287 nm and 135 nm respectively as analyzed from SEM images (Fig. 1 Our previous study has shown that ferromagnetic gadolinium silicide (Gd5Si4) nanoparticles (NP) could be potentially efficient T2 CA for MRI with significantly reduced echo time (TE) compared to Superparamagnetic Iron Oxide Nanoparticles (SPION) [1]. T2 CA are defined by their relaxivity, r2, which is dependent on both the saturation magnetization (Ms) and size of the NPs [1,2,4]. In this study, effect of Gd5Si4 NPs of varying sizes and concentrations are investigated on T1, T2 and T2* (effective/observed T2) relaxations times. Gd5Si4 NPs categorized into three fractions (named S1, S2 and S3) based on average sizes of 586 nm, 287 nm and 135 nm respectively as analyzed from SEM images (Fig. 1
h-index
citations
0
works
0
NIH funding
primary concept
email

Recent publications

T1, T2 and T2* relaxations in MRI based on Gd5Si4 nanoparticles of varying sizes
2023cited by 4position: middledoi
T1, T2 and T2* relaxations in MRI based on Gd5Si4 nanoparticles of varying sizes
2023cited by 4position: middledoi
Effect of Gd<sub>5</sub>Si<sub>4</sub> Ferromagnetic Nanoparticle Sizes on T<sub>1</sub>, T<sub>2</sub> and T<sub>2</sub>* Relaxation in MRI
2018 IEEE International Magnetics Conference (INTERMAG) 2018cited by 0position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Shivakumar Hunagund · Virginia Commonwealth University3 papers (2018–2023)Jens T. Rosenberg · University of Florida3 papers (2018–2023)V. K. Pecharsky · Virginia Commonwealth University3 papers (2018–2023)Shamik Das Gupta · Virginia Commonwealth University2 papers (2023–2023)A A El-Gendy · Virginia Commonwealth University2 papers (2023–2023)Ravi L. Hadimani · Virginia Commonwealth University2 papers (2018–2023)Shalabh Gupta · Virginia Commonwealth University1 papers (2018–2018)Ahmed A. El‐Gendy · Virginia Commonwealth University1 papers (2018–2018)
Looking for a research collaborator?
Search millions of scientists by field, institution, impact, and funding status — see their work, find their email, and reach out directly.
Find collaborators in Atomic and Molecular Physics, and Optics · Electronic, Optical and Magnetic Materials →