activity
20012003
most citedSQUID Magnetometry for Cancer Screening a Feasibility Study

2 citations · 2 across the 1 of their papers we have counts for

collaborators
Showing physics.med-phShow all

5 papers · 1 filter

physics.med-ph2007177 cited

Microtesla MRI of the human brain combined with MEG

V. S. Zotev, A. N. Matlashov, P. L. Volegov +5

One of the challenges in functional brain imaging is integration of complementary imaging modalities, such as magnetoencephalography (MEG) and functional magnetic resonance imaging…

physics.med-ph200783 cited

SQUID-based instrumentation for ultra-low-field MRI

V. S. Zotev, A. N. Matlashov, P. L. Volegov +3

Magnetic resonance imaging at ultra-low fields (ULF MRI) is a promising new imaging method that uses SQUID sensors to measure the spatially encoded precession of pre-polarized nucl…

physics.med-ph200772 cited

Parallel MRI at microtesla fields

V. S. Zotev, P. L. Volegov, A. N. Matlashov +3

Parallel imaging techniques have been widely used in high-field magnetic resonance imaging (MRI). Multiple receiver coils have been shown to improve image quality and allow acceler…

physics.med-ph2006

Multi-Channel SQUID System for MEG and Ultra-Low-Field MRI

Vadim S. Zotev, Andrei N. Matlachov, Petr L. Volegov +6

A seven-channel system capable of performing both magnetoencephalography (MEG) and ultra-low-field magnetic resonance imaging (ULF MRI) is described. The system consists of seven s…

physics.med-ph20032 cited

SQUID Magnetometry for Cancer Screening a Feasibility Study

G. G. Kenning, R. Rodriguez, V. S. Zotev +5

The recent demonstration that nanoparticles associated with various biological molecules and pharmacological agents can be administered systemically to humans, without toxicity fro…