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One or more keywords matched the following properties of Bader, Kenneth
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overview The focus of the Biomedical Acoustics Development and Engineering Research Laboratory (BADER Lab) is the translation of therapeutic ultrasound for non- or minimally invasive treatment of cardiovascular and cancerous disease. Specifically, we utilize acoustic cavitation for combinatorial ablation and enhanced drug delivery treatment strategies of pathologies resistant to standard interventional techniques. To assess bubble activity and the resultant changes in tissue structure, we are developing multi-modal imaging approaches via diagnostic ultrasound and magnetic resonance imaging. Analytic and numerical bubble dynamics models are also utilized to gain insight into the mechanism of action of our therapeutic approaches. Current research topics include: • Chronic thrombus ablation with histotripsy and thrombolytic drugs • Passive cavitation and MR imaging to assess histotripsy-induced liquefaction • In vitro assessment of histotripsy-enhanced drug delivery • Histotripsy-induced sonochemical reactions for the treatment of cancer • Numeric and analytic models of bubble dynamics • Magnetic Resonance-guided transurethral prostate ablation For more information, visit our laboratory website: baderlab.uchicago.edu
One or more keywords matched the following items that are connected to Bader, Kenneth
Item TypeName
Concept Thrombosis
Concept Venous Thrombosis
Academic Article Thrombolytic efficacy and enzymatic activity of rt-PA-loaded echogenic liposomes.
Academic Article Efficacy of histotripsy combined with rt-PA in vitro.
Academic Article Cavitation thresholds of contrast agents in an in vitro human clot model exposed to 120-kHz ultrasound.
Academic Article In vitro thrombolytic efficacy of echogenic liposomes loaded with tissue plasminogen activator and octafluoropropane gas.
Grant Chronic thrombus ablation with histotripsy and thrombolytics
Academic Article In vitro assessment of stiffness-dependent histotripsy bubble cloud activity in gel phantoms and blood clots.
Academic Article In Vitro Thrombolytic Efficacy of Single- and Five-Cycle Histotripsy Pulses and rt-PA.
Academic Article Assessment of Collaborative Robot (Cobot)-Assisted Histotripsy for Venous Clot Ablation.
Academic Article Clot Degradation Under the Action of Histotripsy Bubble Activity and a Lytic Drug.
Academic Article An In vitro System to Gauge the Thrombolytic Efficacy of Histotripsy and a Lytic Drug.
Academic Article Assessment of histological characteristics, imaging markers, and rt-PA susceptibility of ex vivo venous thrombi.
Academic Article (More than) doubling down: Effective fibrinolysis at a reduced rt-PA dose for catheter-directed thrombolysis combined with histotripsy.
Academic Article Effect of Thrombin and Incubation Time on Porcine Whole Blood Clot Elasticity and Recombinant Tissue Plasminogen Activator Susceptibility.
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  • Thrombosis