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SImOS   Smart Implants for Orthopedic Surgery Prof. Dr. Peter Ryser EPFL on behalf of SImOS partners
Outline ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
General objectives ,[object Object]
Introduction: on the concept of the project:   Provide in-vivo parameters for the clinicians and prosthesis designers ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
A multidisciplinary consortium ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Introduction:  the concept of the project Force & motion sensors Electronics Sensors interface Communication Packaging Biomechanical modeling Surgical implantation
International state-of-the-art  ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],1. Biomechanics laboratory of Charit é -Universit ätsmedizin,  Berlin, Germany 2. Orthopaedic Research Laboratories, Scripps Clinic, San Diego, USA  3. Department of Information Engineering, University of Brescia, Brescia, Italy
Large-scale demonstrator architecture A smaller version of the demonstrator, acquiring the signals of the force sensors inside the  polyethylene part  of the prostheses, has been developed. Sensor Analog front-end Microcontroller Communication  Power management  Magnetometers HMC5843 I2C Accelerometers I2C/SPI Analog   sensors Sensor Interface vdd2.7 vdd1.8 I2C Vdd1.8 vdd1.8 I2C/SPI vdd2.7 ip1 ip2 in1 in2 DISCRETE COMPONENTS CPLD PMU Power management unit MAX17710 vdd2.7 vdd1.8 MCU I2C and/or SPI SPI JTAG SPI MSP430 Serial  memory JTAG Bridge For ISP CPLD JTAG Battery and/or supercap RF  transponder TMS   37157 SPI
Remote Powering Best performance under the influence of the metallic parts. [Atasoy, Prime2010] Reader Antenna Implanted Antenna Image source: http://healthtopics.hcf.com.au/TotalKneeReplacement.aspx External coil circumferences the knee Internal coil inside the insert
Force sensors Si TiW Al PI Ti Pt Ti Strain gauge Fabrication Design Realization Specifications Excitation: 1.5V Power: 0.7mW Gauge factor: ~2 Volume:  0.24mm 2
Motion sensors d + (L) AMR sensors Magnet AMR sensors Artificial  Neural Network  Reference sensor angle  rms  error during  Rotation :  0.6 deg Translation : 0.8 deg Sensitive dist. range L=25mm L=8mm L=5mm d
Sensor electronics design ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Analog front-end  8 Channel Readout Electronic Remotely powered 1 Channel board Test boards
Analog Digital Convertor ,[object Object],[object Object],[object Object],[object Object],[1] S.Ali, S.Tanner, P-A.Farine “A Novel 1V, 24uW, Sigma Delta Modulator using Amplifier and Comparator based  technique, with 64.7dB SNDR and 10KHz Bandwidth”, IEEE Int. Conf. on Circuits and Systems, December 2010 1.   3-rd order amplifier and comparator based SC SDM   2.   Multi-bit SDM with  DAC calibration
First technology demonstrator ,[object Object],[object Object],[object Object],[object Object]
First technology demonstrator
From large scale demonstrator… to knee simulator ,[object Object],[object Object],[object Object],Knee simulator (MTS) Improve large-scale to  in vitro  demonstrator
Additional founding ,[object Object],[object Object],[object Object]
Prospect for the next milestones ,[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Thanks to all the team members
[object Object]

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SImOS

  • 1. SImOS Smart Implants for Orthopedic Surgery Prof. Dr. Peter Ryser EPFL on behalf of SImOS partners
  • 2.
  • 3.
  • 4.
  • 5.
  • 6. Introduction: the concept of the project Force & motion sensors Electronics Sensors interface Communication Packaging Biomechanical modeling Surgical implantation
  • 7.
  • 8. Large-scale demonstrator architecture A smaller version of the demonstrator, acquiring the signals of the force sensors inside the polyethylene part of the prostheses, has been developed. Sensor Analog front-end Microcontroller Communication Power management Magnetometers HMC5843 I2C Accelerometers I2C/SPI Analog sensors Sensor Interface vdd2.7 vdd1.8 I2C Vdd1.8 vdd1.8 I2C/SPI vdd2.7 ip1 ip2 in1 in2 DISCRETE COMPONENTS CPLD PMU Power management unit MAX17710 vdd2.7 vdd1.8 MCU I2C and/or SPI SPI JTAG SPI MSP430 Serial memory JTAG Bridge For ISP CPLD JTAG Battery and/or supercap RF transponder TMS 37157 SPI
  • 9. Remote Powering Best performance under the influence of the metallic parts. [Atasoy, Prime2010] Reader Antenna Implanted Antenna Image source: http://healthtopics.hcf.com.au/TotalKneeReplacement.aspx External coil circumferences the knee Internal coil inside the insert
  • 10. Force sensors Si TiW Al PI Ti Pt Ti Strain gauge Fabrication Design Realization Specifications Excitation: 1.5V Power: 0.7mW Gauge factor: ~2 Volume: 0.24mm 2
  • 11. Motion sensors d + (L) AMR sensors Magnet AMR sensors Artificial Neural Network  Reference sensor angle rms error during Rotation : 0.6 deg Translation : 0.8 deg Sensitive dist. range L=25mm L=8mm L=5mm d
  • 12.
  • 13.
  • 14.
  • 16.
  • 17.
  • 18.
  • 19.
  • 20.