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Programs Research Funded Projects

FUSF Funded Research Projects

The foundation is proud to have provided funding support for the following projects through its Research Awards Program.

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# Article Title
1 Costs of Uterine Fibroid Treatments Including Focused Ultrasound Surgery
2 Hypoxia-directed Magnetic Resonance-guided Focused Ultrasound Therapy
3 Tests of microbubble-enhanced ablation in a large animal model with a low-frequency, transcranial MR
4 Image-Guided Drug Delivery to Tumors Using Ultrasound-Activated Perfluorocarbon
5 Delivery of Brain Tumor Penetrating Nanoparticles Across the Blood-Brain Barrier with MRgFUS
6 MR-Guided Focused Ultrasound Ablation of Visceral Fat: A new treatment for metabolic syndrome
7 Heterogeneity correction for improved breast cancer ablation
8 A Safety and Feasibility Study of MRgFUS Lesioning in the Setting of Deep Brain Stimulation
9 A Radiographic and Histologic Comparison Between Radiofrequency, Gamma Knife Radiosurgery, and Focus
10 Development and clinical evaluation of MR-guided focused ultrasound for tattooing tumors
11 Robust MR thermometry for MRgHIFU in breast and liver
12 MRI-guided localized delivery of chemotherapy using temperature-sensitive liposomes and HIFU
13 Induction of an immune response to breast cancer with MR-guided focused ultrasound tumor ablation
14 Creation and validation of a clinically-relevant ultrasound-enhanced drug delivery strategy
15 Microbubble-Enhanced FUS for more Efficient Therapy for Uterine Fibroids
16 Treatment of chronic functional brain disorders using MRgFUS: a pilot study
17 Translational Studies of the Effects of Pulsed HIFU using a Modified Clinical MR guided Focused Ultrasound Device
18 FUS-mediated Reversible Modulation of Region-specific Brain Function
19 MR-Guided High Intensity Focused Ultrasound — Temperature Measurement
20 MR Guided Pulsed High Intensity Focused Ultrasound Enhancement of Docetaxel Combined with Radiotherapy for Prostate Cancer Treatment
21 The Effect of Focused Ultrasound Thermal Ablation on Nerve Function
22 Targeted Delivery of Controlled-Release Nanoparticles to Brain Tumors Using Contrast Agent Microbubbles and High-Intensity Focused Ultrasound