Electromagnetic Compatibility of Transcutaneous Energy Transmission System for Totally Implantable Artificial Heart
نویسندگان
چکیده
منابع مشابه
Transcutaneous Energy Transfer System for Powering Implantable Biomedical Devices
Time varying magnetic fields can be used to transfer power across the skin to drive implantable biomedical devices without the use of percutaneous wires. However the coupling between the external and internal coils will vary according to orientation and posture. Other potential sources of power delivery variations arise from changes in circuit parameters and loading conditions. To maintain corr...
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An infrared (IR) transcutaneous remote control was designed for use in the totally implantable middle ear system. Considering the IR reflection, absorption and scattering effect of the skin, the required IR radiant intensity is calculated. After we have implemented the designed control, the transcutaneous operation experiment was carried out using a porcine skin. key words: implantable middle e...
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Transcutaneous energy transmission (TET) plays an important role in providing power to implantable biomedical devices such as total artificial heart and heart assist devices through wireless power transmission. The system can provide a power varying from 5-15W. The paper deals with certain challenges like i) temperature rise due to power loss which may have direct effects on the skin. ii) posit...
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BACKGROUND The objective of this study is to investigate electromagnetic compatibility (EMC) of implantable neurostimulators with the emissions from radio frequency identification (RFID) emitters. METHODS Six active implantable neurostimulators with lead systems were tested for susceptibility to electromagnetic fields generated by 22 RFID emitters. These medical devices have been approved for...
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ژورنال
عنوان ژورنال: IEEJ Transactions on Electronics, Information and Systems
سال: 2003
ISSN: 0385-4221,1348-8155
DOI: 10.1541/ieejeiss.123.1219