Monitoring Embolized Brain Aneurysms Without radiation or contrast
researchers from the University of British Columbia have discovered an interesting property of the platinum embolism implant – it can act as a fairly accurate sensor and antenna. The reason is simply that the implant’s coiled shape causes its material properties, namely its resonance frequency, to vary depending on the blood flow through it. A simple handheld RF reader is all that would be required to monitor the status of the embolization-coil sensor.
Department of Electrical & Computer Engineering, University of British Columbia, 2332 Main Mall, Vancouver, BC, V6T 1Z4 Canada. The rupture of a cerebral aneurysm is the most common cause of subarachnoid hemorrhage. Endovascular embolization of the aneurysms by implantation of Guglielmi detachable coils (GDC) has become a major treatment approach in the prevention of a rupture. Implantation of the coils induces formation of tissues over the coils, embolizing the aneurysm. However, blood entry into the coiled aneurysm often occurs due to failures in the embolization process. Current diagnostic methods used for aneurysms, such as X-ray angiography and computer tomography, are ineffective for continuous monitoring of the disease and require extremely expensive equipment. Here we present a novel technique for wireless monitoring of cerebral aneurysms using implanted embolization coils as radiofrequency resonant sensors that detect the blood entry. The experiments show that commonly used embolization coils could be utilized as electrical inductors or antennas. As the blood flows into a coil-implanted aneurysm, parasitic capacitance of the coil is modified because of the difference in permittivity between the blood and the tissues grown around the coil, resulting in a change in the coil's resonant frequency. The resonances of platinum GDC-like coils embedded in aneurysm models are detected to show average responses of 224-819MHz/ml to saline injected into the models. This preliminary demonstration indicates a new possibility in the use of implanted GDC as a wireless sensor for embolization failures, the first step toward realizing long-term, noninvasive, and cost-effective remote monitoring of cerebral aneurysms treated with coil embolization.Radio aneurysm coils for noninvasive detection of cerebral embolization failures: A preliminary study.
Source
Abstract
Tags: Aneurysm, Imaging, New Devices
Share your views...
0 Respones to "Monitoring Embolized Brain Aneurysms Without radiation or contrast"
Post a Comment