DocumentCode :
1093190
Title :
An implantable telemetry platform system for in vivo monitoring of physiological parameters
Author :
Valdastri, Pietro ; Menciassi, Arianna ; Arena, Alberto ; Caccamo, Chiara ; Dario, Paolo
Author_Institution :
CRIM Lab., Scuola Superiore Sant´´ Anna, Pisa, Italy
Volume :
8
Issue :
3
fYear :
2004
Firstpage :
271
Lastpage :
278
Abstract :
This paper describes a microcontroller-based multichannel telemetry system, suitable for in vivo monitoring of physiological parameters. The device can digitalize and transmit up to three analog signals coming from different sensors. The telemetry transmission is obtained by using a carrier frequency of 433.92 MHz and an amplitude-shift keying modulation. The signal data rate is 13 kb/s per channel. The digital microcontroller provides good flexibility and interesting performance, such as the threshold monitoring, the transmission error detection, and a low power consumption, thanks to the implementation of a sleep mode. The small overall size (less than 1 cm3), the power density compatible with current regulations for the design of implantable devices, and the dedicated packaging make the system suitable for in vivo monitoring in humans. The design, fabrication, operation, packaging, and performance of the system are described in this paper. An in vivo pressure monitoring case study is described as well.
Keywords :
amplitude shift keying; biomedical telemetry; data acquisition; medical information systems; microcontrollers; patient monitoring; wireless sensor networks; 13 kbit/s; 433.92 MHz; amplitude-shift keying modulation; biotelemetry; carrier frequency; data acquisition; digital microcontroller; implantable device; implantable telemetry platform system; in vivo monitoring; in vivo pressure monitoring; microcontroller-based multichannel telemetry system; physiological parameter; power consumption; power density; signal data rate; telemetry transmission; threshold monitoring; transmission error detection; wireless sensor; Amplitude modulation; Biomedical monitoring; Condition monitoring; Current control; Energy consumption; Frequency; In vivo; Microcontrollers; Packaging; Telemetry; Electronics, Medical; Equipment Design; Equipment Failure Analysis; Miniaturization; Monitoring, Ambulatory; Prostheses and Implants; Signal Processing, Computer-Assisted; Telemetry; Transducers, Pressure;
fLanguage :
English
Journal_Title :
Information Technology in Biomedicine, IEEE Transactions on
Publisher :
ieee
ISSN :
1089-7771
Type :
jour
DOI :
10.1109/TITB.2004.834389
Filename :
1331404
Link To Document :
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