Search Results - "Bankson, J. A."
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Nanoshell-Mediated Near-Infrared Thermal Therapy of Tumors under Magnetic Resonance Guidance
Published in Proceedings of the National Academy of Sciences - PNAS (11-11-2003)“…Metal nanoshells are a class of nanoparticles with tunable optical resonances. In this article, an application of this technology to thermal ablative therapy…”
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Technical developments for cerebral thermal treatment: water-cooled diffusing laser fibre tips and temperature-sensitive MRI using intersecting image planes
Published in International journal of hyperthermia (01-02-2004)“…The aim was to determine if water-cooled diffusing tips could produce larger and safer (better controlled) thermal lesions than non-cooled diffusing tips at…”
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Multi-channel magnetic resonance spectroscopy through time domain multiplexing
Published in Magnetic resonance imaging (01-09-2001)“…Time domain multiplexing (TDM) is presented as a viable approach to increasing the sensitivity and efficiency of magnetic resonance spectroscopic (MRS)…”
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Superconducting single and phased-array probes for clinical and research MRI
Published in IEEE transactions on applied superconductivity (01-06-2003)“…Significant improvement of the signal-to-noise ratio (SNR) for magnetic resonance imaging (MRI) applications, in which the thermal noise of the rf receiver…”
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Mechanistic evaluation of the combination effect of paclitaxel (Pac) and bevacizumab (Bev) in breast cancer xenografts
Published in Journal of clinical oncology (20-05-2009)“…Abstract only 11007 Background: Chemosensitization is the ability to augment the effects of standard chemotherapy. One of the possible mechanisms for…”
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The effect of AMG 706, a novel multi-kinase inhibitor, on vascular permeability and blood flow as assessed by dynamic contrast enhanced magnetic resonance imaging in an in vivo preclinical tumor model
Published in Journal of clinical oncology (01-06-2005)“…Abstract only…”
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MR thermometry-based feedback control of laser interstitial thermal therapy at 980 nm
Published in Lasers in surgery and medicine (01-01-2004)“…Background and Objectives The goal of this study was to explore the feasibility of magnetic resonance thermal imaging (MRTI)‐based feedback control of…”
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Improved method of in vivo respiratory-gated micro-CT imaging
Published in Physics in medicine & biology (07-09-2004)“…The presence of motion artifacts is a typical problem in thoracic imaging. However, synchronizing the respiratory cycle with computed tomography (CT) image…”
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Thermal therapy of canine cerebral tumors using a 980 nm diode laser with MR temperature-sensitive imaging feedback
Published in Lasers in surgery and medicine (01-07-2004)“…Background and Purpose The laser‐induced thermal therapy (LITT) of cerebral tumors has conventionally been performed using Nd:YAG lasers and is associated with…”
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SMASH imaging with an eight element multiplexed RF coil array
Published in Magma (New York, N.Y.) (01-06-2000)“…SMASH (SiMultaneous Acquisition of Spatial Harmonics) is a technique which can be used to acquire multiple lines of k-space in parallel, by using spatial…”
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Partially parallel imaging with phase-sensitive data: Increased temporal resolution for magnetic resonance temperature imaging
Published in Magnetic resonance in medicine (01-03-2005)“…Magnetic resonance temperature imaging can be used to monitor the progress of thermal ablation therapies, increasing treatment efficacy and improving patient…”
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A fast spin echo two-point Dixon technique and its combination with sensitivity encoding for efficient T2-weighted imaging
Published in Magnetic resonance imaging (01-12-2005)“…A fast spin echo two-point Dixon (fast 2PD) technique was developed for efficient T2-weighted imaging with uniform water and fat separation. The technique…”
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Simulation-based investigation of partially parallel imaging with a linear array at high accelerations
Published in Magnetic resonance in medicine (01-04-2002)“…Partially parallel imaging strategies such as SMASH, SENSE, and PILS rely on the sensitivity distribution of phased array RF coils to reduce MRI imaging time…”
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