system-synthesis.org
OFFIS SimLink: Open Virtual Platform - Matlab/Simulink co-simulation [System Synthesis]
http://system-synthesis.org/offissimlink
OFFIS SimLink: Open Virtual Platform - Matlab/Simulink co-simulation. OFFIS SimLink: Open Virtual Platform - Matlab/Simulink co-simulation. The example that is explained in the following is freely available for download here. A simulated system and environment is completely determined. Any situation and test can clearly be defined to allow the implementation of regression tests for best effort embedded code coverage, verification and validation. The installation of unverified and unvalidated software und...
blog.nephronplus.eu
Front Panel | NEPHRON+ EU Project
https://blog.nephronplus.eu/2012/05/30/microfluidic-electronic-subsystem-integrated/nephronfrontpanel
Building an ICT-enabled wearable artificial kidney for on-body blood purification. Microfluidic Electronic Subsystem Integrated. Raquo; Front Panel. ICT / Personal Health Systems. European Commission / Framework Programme 7. EC / ICT for Health. EC / ICT Research in eHealth. Blog at WordPress.com. Follow “NEPHRON EU Project”. Get every new post delivered to your Inbox. Build a website with WordPress.com.
blog.nephronplus.eu
Double Blood Temperature Sensor | NEPHRON+ EU Project
https://blog.nephronplus.eu/2012/05/30/microfluidic-electronic-subsystem-integrated/nephrondoubletemperaturesensor
Building an ICT-enabled wearable artificial kidney for on-body blood purification. Microfluidic Electronic Subsystem Integrated. Raquo; Double Blood Temperature Sensor. Double Blood Temperature Sensor. ICT / Personal Health Systems. European Commission / Framework Programme 7. EC / ICT for Health. EC / ICT Research in eHealth. Blog at WordPress.com. Follow “NEPHRON EU Project”. Get every new post delivered to your Inbox. Build a website with WordPress.com.
blog.nephronplus.eu
Uncategorized | NEPHRON+ EU Project
https://blog.nephronplus.eu/category/uncategorized
Building an ICT-enabled wearable artificial kidney for on-body blood purification. Nephron prototype presentation at World Kidney Day 2013. March 22, 2013. Maarten Wester (UMCU) at the WKD 2013 explaining the Nephron wearable artificial kidney, attached to mannequin Rinus. Enthusiastic audience visiting the demo area. Nephron engineering prototype in action. Comments Off on Nephron prototype presentation at World Kidney Day 2013. Microfluidic Electronic Sub-System Demostration. May 31, 2012. May 31, 2012.
blog.nephronplus.eu
December | 2011 | NEPHRON+ EU Project
https://blog.nephronplus.eu/2011/12
Building an ICT-enabled wearable artificial kidney for on-body blood purification. OVP-Simulink interfacing code for co-simulation published. December 14, 2011. Has implemented, as part of the project, an interface between the Open Virtual Platform. For co-simulation purposes. The source code to this development has now been published online. Comments Off on OVP-Simulink interfacing code for co-simulation published. You are currently browsing the NEPHRON EU Project. Blog archives for December, 2011.
blog.nephronplus.eu
NEPHRON+ EU Project | Building an ICT-enabled wearable artificial kidney for on-body blood purification. | Page 2
https://blog.nephronplus.eu/page/2
Building an ICT-enabled wearable artificial kidney for on-body blood purification. Presentation at the European Society of Artificial Organs. October 10, 2011. Last weekend, the NEPHRON system was presented at the European Society of Artificial Organs (ESAO) by Frank Simonis, CEO of project partner. It can be watched online, following this link. Comments Off on Presentation at the European Society of Artificial Organs. Chemical sensors in the NEPHRON system. October 10, 2011. Figure 2: Calibration curve.
blog.nephronplus.eu
First version of mobile application NEPHRON+ released! | NEPHRON+ EU Project
https://blog.nephronplus.eu/2012/05/09/first-version-of-mobile-application-nephron-released
Building an ICT-enabled wearable artificial kidney for on-body blood purification. First version of mobile application NEPHRON released! For more details check NEPHRON site. This entry was posted on Wednesday, May 9th, 2012 at 12:06 pm and is filed under General. You can follow any responses to this entry through the RSS 2.0. Feed Both comments and pings are currently closed. Laquo; Previous Post. Next Post ». ICT / Personal Health Systems. European Commission / Framework Programme 7. EC / ICT for Health.
blog.nephronplus.eu
Microfluidic Electronic Subsystem Integrated | NEPHRON+ EU Project
https://blog.nephronplus.eu/2012/05/30/microfluidic-electronic-subsystem-integrated
Building an ICT-enabled wearable artificial kidney for on-body blood purification. Microfluidic Electronic Subsystem Integrated. A demonstrator that contains the Reat Time Microfluidic Circuit Board (RTMCB) integrating the physical sensors, the Electrochemical platform, the actuators and the polarizer is shown in the picture below. This sub-system is controlled by a PC testing program (developed by CSEM) by means of a IFRS422 module (USB-PTP RS422 link). Double Blood Temperature Sensor. Next Post ».
blog.nephronplus.eu
OVP | NEPHRON+ EU Project
https://blog.nephronplus.eu/tag/ovp
Building an ICT-enabled wearable artificial kidney for on-body blood purification. OVP-Simulink interfacing code for co-simulation published. December 14, 2011. Has implemented, as part of the project, an interface between the Open Virtual Platform. For co-simulation purposes. The source code to this development has now been published online. Comments Off on OVP-Simulink interfacing code for co-simulation published. ICT / Personal Health Systems. European Commission / Framework Programme 7.