Microbubble gas volume: A unifying dose parameter in blood-brain barrier opening by focused ultrasound
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[1] K. Hynynen,et al. Noninvasive and targeted delivery of therapeutics to the brain using focused ultrasound , 2017, Neuropharmacology.
[2] J. S. Suk,et al. Targeted gene transfer to the brain via the delivery of brain-penetrating DNA nanoparticles with focused ultrasound. , 2016, Journal of controlled release : official journal of the Controlled Release Society.
[3] E. Konofagou,et al. Effects of the microbubble shell physicochemical properties on ultrasound-mediated drug delivery to the brain. , 2015, Journal of controlled release : official journal of the Controlled Release Society.
[4] E. Konofagou,et al. Noninvasive, neuron-specific gene therapy can be facilitated by focused ultrasound and recombinant adeno-associated virus , 2014, Gene Therapy.
[5] Nathan McDannold,et al. Ultrasound-mediated blood-brain barrier disruption for targeted drug delivery in the central nervous system , 2014, Defense + Security Symposium.
[6] Mark Borden,et al. State-of-the-art materials for ultrasound-triggered drug delivery. , 2014, Advanced drug delivery reviews.
[7] Ankur Tyagi. Focal delivery of AAV2/1-transgenes into the rat brain by localized ultrasound-induced BBB Opening , 2014, Annals of neurosciences.
[8] Elisa E. Konofagou,et al. Dependence of the reversibility of focused- ultrasound-induced blood-brain barrier opening on pressure and pulse length in vivo , 2013, IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control.
[9] S. Garg,et al. The effect of lipid monolayer in-plane rigidity on in vivo microbubble circulation persistence. , 2013, Biomaterials.
[10] Chien-Cheng Chen,et al. Evaluation of dose distribution of molecular delivery after blood-brain barrier disruption by focused ultrasound with treatment planning. , 2013, Ultrasound in medicine & biology.
[11] T. Yen,et al. Noninvasive and Targeted Gene Delivery into the Brain Using Microbubble-Facilitated Focused Ultrasound , 2013, PloS one.
[12] P. Calabresi,et al. New synaptic and molecular targets for neuroprotection in Parkinson's disease , 2013, Movement disorders : official journal of the Movement Disorder Society.
[13] Elisa E. Konofagou,et al. Optimization of the Ultrasound-Induced Blood-Brain Barrier Opening , 2012, Theranostics.
[14] Mark A. Borden,et al. Advances in Ultrasound Mediated Gene Therapy Using Microbubble Contrast Agents , 2012, Theranostics.
[15] K. Hynynen,et al. Targeted delivery of self-complementary adeno-associated virus serotype 9 to the brain, using magnetic resonance imaging-guided focused ultrasound. , 2012, Human gene therapy.
[16] Shunichi Homma,et al. Polyplex-microbubble hybrids for ultrasound-guided plasmid DNA delivery to solid tumors. , 2012, Journal of controlled release : official journal of the Controlled Release Society.
[17] Yao-Sheng Tung,et al. The mechanism of interaction between focused ultrasound and microbubbles in blood-brain barrier opening in mice. , 2011, The Journal of the Acoustical Society of America.
[18] M. Borden,et al. The role of poly(ethylene glycol) brush architecture in complement activation on targeted microbubble surfaces. , 2011, Biomaterials.
[19] James J. Choi,et al. Noninvasive and Localized Blood—Brain Barrier Disruption using Focused Ultrasound can be Achieved at Short Pulse Lengths and Low Pulse Repetition Frequencies , 2011, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[20] S. Homma,et al. Effect of microbubble size on fundamental mode high frequency ultrasound imaging in mice. , 2010, Ultrasound in medicine & biology.
[21] Yao-Sheng Tung,et al. Identifying the inertial cavitation threshold and skull effects in a vessel phantom using focused ultrasound and microbubbles. , 2010, Ultrasound in medicine & biology.
[22] Win-Li Lin,et al. Quantitative evaluation of the use of microbubbles with transcranial focused ultrasound on blood-brain-barrier disruption. , 2008, Ultrasonics sonochemistry.
[23] Natalia Vykhodtseva,et al. MRI-guided targeted blood-brain barrier disruption with focused ultrasound: histological findings in rabbits. , 2005, Ultrasound in medicine & biology.
[24] S. Kaul,et al. Microbubble persistence in the microcirculation during ischemia/reperfusion and inflammation is caused by integrin- and complement-mediated adherence to activated leukocytes. , 2000, Circulation.
[25] E. Konofagou,et al. Microbubble type and distribution dependence of focused ultrasound-induced blood-brain barrier opening. , 2014, Ultrasound in medicine & biology.
[26] W. Pardridge,et al. Reengineering biopharmaceuticals for targeted delivery across the blood-brain barrier. , 2012, Methods in enzymology.
[27] Yao-Sheng Tung,et al. Microbubble-Size Dependence of Focused Ultrasound-Induced Blood–Brain Barrier Opening in Mice In Vivo , 2010, IEEE Transactions on Biomedical Engineering.