September, 2006Doc: IEEE 802.15-BAN-0409-00 Zhen, Li, and Kohno Slide1 Implanted applications of IG-BAN Bin Zhen, Huan-Bang Li and Ryuji Kohno National.

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September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide1 Implanted applications of IG-BAN Bin Zhen, Huan-Bang Li and Ryuji Kohno National Institute of Information and Communications Technology (NICT)

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide2 Project: IEEE P Working Group for Wireless Personal Area Networks (WPANs) Submission Title: [IG-BAN applications: implanted devices] Date Submitted: [September, 2006] Source: [Bin Zhen, Huan-Bang Li and Ryuji Kohno] Company [National Institute of Information and Communications Technology (NICT)] Contact: Bin Zhen Voice:[ , Abstract: [Discussions on some applications related to body area networks (BAN)] Purpose: [To provide some application examples for BAN] Notice:This document has been prepared to assist the IEEE P It is offered as a basis for discussion and is not binding on the contributing individual(s) or organization(s). The material in this document is subject to change in form and content after further study. The contributor(s) reserve(s) the right to add, amend or withdraw material contained herein. Release: The contributor acknowledges and accepts that this contribution becomes the property of IEEE and may be made publicly available by P

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide3 Motivation Until now we are not very clear about the differences between BAN and PAN. –Implanted device is obviously not covered by PAN

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide4 Implanted devices

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide5 Implanted devices Implantable sensors –To passively collect signals from organ, blood, neuron etc –To actively conduct a physical action and measure the response, e.g. blood vessel, mamma. Implantable action executer –To conduct inner operation, e.g. drug delivery, stimulation etc Wireless functions –Real time communication –Positioning

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide6 In-out body communications Body/emergence information sensed by implantable sensors Biomedical identification and security Magnetic belt sensor

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide7 Stories Measurement of blood pressure in the chamber of heart Epilepsy treating by electrical stimulation –Implantable sensor under scalp detects and predicts epileptic seizures Drug intake and its effects on physiology and clinical condition of patient compliance chronically monitored by implantable sensors Artificial cochlear and retina

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide8 Out-in body communication Remote control, calibration and reprogram of implantable devices –Pacemaker, artificial cochlear gateway

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide9 In-in body communication Close loop control –It is difficult for two implanted devices to communicate each other directly. A body surface forwarder is needed. Implanted glucose sensor Insulin pump Body surface forwarder

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide10 Story Real time glucose monitor and insulin injection for people with diabetes

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide11 In-body positioning Some body parameters should be explained as per positions Locate the affected area –Implantable camera is expensive and power hungry –Gastric ulcer Drug dispense in a particular area Anchor node Outside the body

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide12 Stories Surgery navigation for low invasive cure –Surgically breast radiation therapy for early stage of breast cancer Location based drug dose dispenser Invasive endoscope replacement Intro-body computer tomography Medical education using in-body GIS

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide13 System requirements Distance: <2m Multiple piconets Data rate –Low: <100Kbps –High: <2Mbps Implanted device lifetime: ~ years

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide14 Communication mechanisms 403MHz and 2.4GHZ Wireless medical telemetry frequency Magnetic 134~139KHz –Inductive link

September, 2006Doc: IEEE BAN Zhen, Li, and Kohno Slide15 Conclusions Medical application of implanted devices