000806704 000__ 05012cam\a2200553Ii\4500 000806704 001__ 806704 000806704 005__ 20230306143830.0 000806704 006__ m\\\\\o\\d\\\\\\\\ 000806704 007__ cr\cn\nnnunnun 000806704 008__ 170104s2017\\\\sz\\\\\\ob\\\\001\0\eng\d 000806704 019__ $$a967884153$$a974651102$$a981776484$$a1005802485$$a1011849502 000806704 020__ $$a9783319493374$$q(electronic book) 000806704 020__ $$a331949337X$$q(electronic book) 000806704 020__ $$z9783319493367 000806704 020__ $$a3319493361 000806704 020__ $$a9783319493367 000806704 0247_ $$a10.1007/978-3-319-49337-4$$2doi 000806704 035__ $$aSP(OCoLC)ocn967656020 000806704 035__ $$aSP(OCoLC)967656020$$z(OCoLC)967884153$$z(OCoLC)974651102$$z(OCoLC)981776484$$z(OCoLC)1005802485$$z(OCoLC)1011849502 000806704 040__ $$aN$T$$beng$$erda$$epn$$cN$T$$dIDEBK$$dGW5XE$$dN$T$$dEBLCP$$dYDX$$dOCLCF$$dNJR$$dCNCGM$$dUPM$$dMERER$$dZ5A$$dOCLCQ$$dVT2$$dUAB 000806704 049__ $$aISEA 000806704 050_4 $$aTK3091 000806704 08204 $$a621.319$$223 000806704 1001_ $$aYılmaz, Gürkan,$$eauthor. 000806704 24510 $$aWireless power transfer and data communication for neural implants :$$bcase study : epilepsy monitoring /$$cGürkan Yılmaz, Catherine Dehollain. 000806704 264_1 $$aCham, Switzerland :$$bSpringer,$$c2017. 000806704 300__ $$a1 online resource. 000806704 336__ $$atext$$btxt$$2rdacontent 000806704 337__ $$acomputer$$bc$$2rdamedia 000806704 338__ $$aonline resource$$bcr$$2rdacarrier 000806704 347__ $$atext file$$bPDF$$2rda 000806704 4901_ $$aAnalog circuits and signal processing 000806704 504__ $$aIncludes bibliographical references and index. 000806704 5050_ $$aPreface; Contents; Acronyms; 1 Introduction; 1.1 Problem Definition; 1.2 Motivation and Research Objectives; 1.2.1 Next Generation Neural Recording Systems; 1.2.2 Research Objectives; 1.3 Neural Data Acquisition; 1.4 Anticipated Challenges; 1.5 Book Outline; References; 2 System Overview; 2.1 System Specifications; 2.2 System-Level Solutions; 2.2.1 Single-Frequency Approach; 2.2.2 Two-Frequency Approach; 2.3 Summary; References; 3 Wireless Power Transfer; 3.1 Implant Powering Solutions; 3.1.1 Ambient Energy Harvesting; 3.1.2 Battery Usage; 3.1.3 Wireless Power Transfer. 000806704 5058_ $$a3.2 Wireless Power Transfer3.3 Magnetic Coupling; 3.4 Implantable Remote Powering Electronics; 3.4.1 Rectifier; 3.4.2 Voltage Regulator; 3.5 Summary; References; 4 Wireless Data Communication; 4.1 Bidirectional Wireless Communication; 4.2 Uplink Communication on the Power Transfer Link; 4.2.1 Modulator; 4.2.2 ASK Demodulator; 4.3 Uplink Communication with a Dedicated Transmitter and Receiver; 4.3.1 Oscillator; 4.3.2 Loop Antenna; 4.3.3 External Base Station Receiver; 4.4 Downlink Communication; 4.5 Clock Recovery; 4.6 Summary; References; 5 Packaging of the Implant; 5.1 Background. 000806704 5058_ $$a5.2 Diffusion Modeling of a Polymeric Package5.3 Temperature Elevation Considerations; 5.4 Summary; References; 6 System-Level Experiments and Results; 6.1 System Integration and Characterization; 6.1.1 Single-Frequency Approach; 6.1.2 Two-Frequency Approach; 6.2 In vitro Experiments; 6.2.1 Long-Term In vitro Experiments; 6.3 In vivo Experiments; 6.3.1 Surgical Procedure for the Implantation of the Electrode Array into a Rat Brain; 6.4 Summary; References; 7 Conclusion; Index. 000806704 506__ $$aAccess limited to authorized users. 000806704 520__ $$aThis book presents new circuits and systems for implantable biomedical applications targeting neural recording. The authors describe a system design adapted to conform to the requirements of an epilepsy monitoring system. Throughout the book, these requirements are reflected in terms of implant size, power consumption, and data rate. In addition to theoretical background which explains the relevant technical challenges, the authors provide practical, step-by-step solutions to these problems. Readers will gain understanding of the numerical values in such a system, enabling projections for feasibility of new projects. Provides complete, system-level perspective for implantable batteryless biomedical system; Extends design example to implementation and long term in-vitro validation; Discusses system design concerns regarding wireless power transmission and wireless data communication, particularly for systems in which both are performed on the same channel/frequency; Presents fully-integrated, implantable system and hermetically sealed packaging. 000806704 588__ $$aOnline resource; title from PDF title page (SpringerLink, viewed January 18, 2017). 000806704 650_0 $$aWireless power transmission. 000806704 650_0 $$aWireless communication systems. 000806704 650_0 $$aBrain-computer interfaces. 000806704 7001_ $$aDehollain, Catherine,$$eauthor. 000806704 77608 $$iPrint version:$$aYilmaz, Gürkan.$$tWireless Power Transfer and Data Communication for Neural Implants : Case Study: Epilepsy Monitoring.$$dCham : Springer International Publishing, ©2017$$z9783319493367 000806704 830_0 $$aAnalog circuits and signal processing series. 000806704 852__ $$bebk 000806704 85640 $$3SpringerLink$$uhttps://univsouthin.idm.oclc.org/login?url=http://link.springer.com/10.1007/978-3-319-49337-4$$zOnline Access$$91397441.1 000806704 909CO $$ooai:library.usi.edu:806704$$pGLOBAL_SET 000806704 980__ $$aEBOOK 000806704 980__ $$aBIB 000806704 982__ $$aEbook 000806704 983__ $$aOnline 000806704 994__ $$a92$$bISE