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MRI Marker Active MRI Stents & Vena Cava Filter -brief introductionAndreas Melzer University of Applied Sciences Gelsenkirchen Institute for Innovative Technologies and Management in Medicine, INSITE med. & Biophan Europe GmbH [email protected] H MRI Visualization of Catheters and Guide Wires Resonator technology can be applied to catheters and guide wires and used without wiring to the MRI Scanner which eliminates risk of heating. B resonator G coil MR-signal • MR Guided Catheterization • MR Tip Tracking, • MR endovascular imaging H Resonators on Laparoscopes and Neuroendoscopes 5 mm Endoscope, Olympus, with „wire less“ Tip tracking coil „aMRIs“ Coils Positive contrast display of endoscopes for MR localization and automatically aligned slice orientation Laparoscopic MR guided RF tumor ablation A. Melzer. M. Wendt, J. Duerk, J Lewin, CWRU, Cleveland 1998 H MRI Guided Neuroendoscopy, A. Melzer, Chinzei, R.Kikinis, F Jolesz BWH, Harvard, Boston 1999 Balloon expandable aMRIs in different Diameter 8 mm 7 mm 6 mm 4500 9 mm 5 mm 10 mm 4000 3739.5 3500 Signal 3000 2500 Average m Max 2143 2000 Min 1500 1473.9 1000 956.7 837.6 500 406.1 0 5 6 7 8 Diameter [mm] 9 10 H Self expanding resonant Nitinol Stent 1.5 Tesla Siemens Magnetom Vison fl2d TR300 TE6 FoV150sq256sq FA40 SL3 AC2 1T5, 0.9 % NaClwater 0,2 mmol Magnevist/l fr = 66,6 MHz, Q = 6,2 2002 In cooperation with Admedes, (ex Euroflex Schüssler, Pforzheim) H MR guided aMRIs Implantation PC controlled blood flow Vascular phantom Resonant Marker proximal and distal to the crimped stent Stent after expansion and partial withdrawal of the balloon catheter Experiments in co-operation with: Dept. of Radiology, University Frankfurt, Germany,1.5 Tesla Siemens H aMRIs Evaluation • • In stent imaging intraluminal substrate Simulation of intimal hyperplasia (aortic wall) and liquid H aMRIs Evaluation • • In stent imaging: intraluminal substrate depiction Thrombus: clotted and liquid blood aMRIs thrombus, TR=300ms, TE=6ms, FA=40°, transversal Tesla, Philips NT, head coil, H MR Guided VCF Implantation and explantation Vascular Phantom with simulation of venous flow in 1.5 Tesla, Siemens Magnetom Vision, flash 2D GRE H Active MRI Vena Cava Filter Approval of MRI imaging of Thrombus capture „in vitro“ with fresh blot Open VCF without thrombus Clotted VCF with thrombus H Experiments at Dept. of Radiology, University Aachen, Germany, 1. 5 Tesla Philips NT, Nitinol aMRI Vena Cava Filter • • • Laser cut active MRI VCF with biocompatible inductivity and capacity through micro structured coatings Delivery catheter with resonant Marker fresh human blood thrombus imaging Signal intensity profile, 1.0 Tesla Siemens Harmony Delivery system Fresh thrombus 2002 In cooperation with Admedes, (ex Euroflex Schüssler, Pforzheim) H • RWTH Aachen Drs. Spüntrup and Bücker 1st animal trial Laser Cut VCF H 1st animal trial Laser Cut VCF • RWTH Aachen Drs. Spüntrup and Bücker H 1st animal trial Laser Cut VCF • RWTH Aachen Drs. Spüntrup and Bücker H 1st animal trial Laser Cut VCF • RWTH Aachen Drs. Spüntrup and Bücker H 1st animal trial Laser Cut VCF • RWTH Aachen Drs. Spüntrup and Bücker H 1st animal trial Laser Cut VCF • RWTH Aachen Drs. Spüntrup and Bücker H 1st animal trial Laser Cut VCF • RWTH Aachen Drs. Spüntrup and Bücker H 1st animal trial Laser Cut VCF • RWTH Aachen Drs. Spüntrup and Bücker H Summary • • Biophan Europe’s proprietary aMRIs technology provides a large platform to improve imaging of vascular and other implants as well as interventional devices during MRI guided vascular and non vascular interventions –www.amris.de Biophan is working on a variety of proprietary technologies to avoid the risk of pacing lead heating and voltage induction to improve safety of cardiac pacemaker an other stimulation devices –www.biophan.com H