This paper compares three different biocompatible packaging covers suitable to support full implantation of multi-panel sensors for remote monitoring of metabolism. The three covers have been designed, realized and implanted in mice for 30 days. ATP and neutrophil concentrations have been measured at the implant site after the device was explanted, to assess the level of biocompatibility of the device.

Biocompatible packagings for fully implantable multi-panel devices for remote monitoring of metabolism / C. Baj-Rossi, A. Cavallini, T.R. Jost, M. Proietti, F. Grassi, G. De Micheli, S. Carrara (BIOMEDICAL CIRCUITS AND SYSTEMS CONFERENCE). - In: Biomedical Circuits and Systems Conference: Engineering for Healthy Minds and Able Bodies, BioCAS 2015 : Atlanta, Georgia, USA, October 22 - 24, 201 : ProceedingsPiscataway : Institute of Electrical and Electronics Engineers, 2015 Dec. - ISBN 978-1-4799-7234-0. - pp. 450-453 (( Intervento presentato al 11. convegno IEEE Biomedical Circuits and Systems Conference, BioCAS tenutosi a Atalanta (Georgia) nel 2015 [10.1109/BioCAS.2015.7348398].

Biocompatible packagings for fully implantable multi-panel devices for remote monitoring of metabolism

F. Grassi;
2015

Abstract

This paper compares three different biocompatible packaging covers suitable to support full implantation of multi-panel sensors for remote monitoring of metabolism. The three covers have been designed, realized and implanted in mice for 30 days. ATP and neutrophil concentrations have been measured at the implant site after the device was explanted, to assess the level of biocompatibility of the device.
epoxy resin; fully implantable biochip; packaging; parylene C; polycarbonate membrane
Settore BIOS-10/A - Biologia cellulare e applicata
dic-2015
IEEE Circuits and Systems Society
IEEE Engineering in Medicine and Biology Society
IEEE Solid-State Circuits Society
Book Part (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1171822
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