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  4. An implantable release-on-demand CMOS drug delivery SoC using electrothermal activation technique
 
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An implantable release-on-demand CMOS drug delivery SoC using electrothermal activation technique

Journal
ACM Journal on Emerging Technologies in Computing Systems
Journal Volume
8
Journal Issue
2
Date Issued
2012
Author(s)
Huang, Y.-J.
Liao, H.-H.
Huang, P.-L.
Wang, T.
Yang, Y.-J.
Wang, Y.-H.
Lu, S.-S.
YAO-JOE YANG  
SHEY-SHI LU  
Wang, T.
DOI
10.1145/2180878.2180884
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/448490
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84863889844&doi=10.1145%2f2180878.2180884&partnerID=40&md5=8a9672c6c193f1da57c59fc39907e4c5
Abstract
An implantable system-on-a-chip (SoC) integrating controller/actuation circuitry and 8 individually addressable drug reservoirs is proposed for on-demand drug delivery. It is implemented by standard 0.35-μmCMOS technology and post-IC processing. The post-IC processing includes deposition of metallic membranes (200°A Pt/3000°A Ti/200°A Pt) to cap the drug reservoirs, deep dry etching to carve drug reservoirs in silicon as drug containers, and PDMS layer bonding to enlarge the drug storage. Based on electrothermal activation technique, drug releases can be precisely controlled by wireless signals. The wireless controller/actuation circuits including on-off keying (OOK) receiver, microcontroller unit, clock generator, power-on-reset circuit, and switch array are integrated on the same chip, providing patients the ability of remote drug activation and noninvasive therapy modification. Implanted by minimally invasive surgery, this SoC can be used for the precise drug dosing of localized treatment, such as the cancer therapy, or the immediate medication to some emergent diseases, such as heart attack. In vitro experimental results show that the reservoir content can be released successfully through the rupture of the membrane which is appointed by received wireless commands. Categories. ? 2012 ACM.
SDGs

[SDGs]SDG3

Other Subjects
Activation techniques; Cancer therapy; Clock generator; CMOS SoC; Drug release; Drug reservoir; Drug storage; Electrothermal; Emergent disease; Heart attack; Implantable; In-vitro; Localized treatment; Metallic membranes; Microcontroller unit; Minimally invasive surgery; On-demand drug delivery; On-off keying; Post-IC.; Switch arrays; System-on-a-chip; Wireless signals; Application specific integrated circuits; Biocompatibility; Drug delivery; Noninvasive medical procedures; Platinum; Programmable logic controllers
Type
journal article

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