BME Summer Seminar Series

Wednesday, June 7th, 2023

9:30-10:30 AM EST

Via Zoom Meeting – link below*

 

Evaluation links:

Juan Mesa: https://purdue.ca1.qualtrics.com/jfe/form/SV_37wVpkY9oanqVTM

 

 

A Wearable Device Towards Automatic Detection and Treatment of Opioid Overdose

Juan Mesa (Hyowon (Hugh) Lee, advisor)

 

 

Abstract: Opioid-induced overdose is one of the leading causes of death among the US population under the age of 50. In 2018, the death rate among opioid users rose to 48,602, followed by a devastating increase to 100,000 in 2021. Prescriptive analgesics for severe pain management (e.g., codeine, fentanyl) and heroin are the most common opioids related to overdose mortality. The overdose process can be reversed by the administration of naloxone, an opioid antagonist that rapidly counteracts the effects of opioid-induced respiratory depression. Over the past years, the concept of a closed-loop opioid overdose detection and naloxone delivery system has emerged as a potential engineering solution to mitigate the devastating effects of the opioid pandemic. Herein, we present our ongoing work in the development of novel implantable and electronic technologies to address the opioid pandemic effects, focusing on a wrist-worn wearable device. Our system is a closed-loop emergency drug delivery system, consisting of (i) a Near-Infrared Spectroscopy (NIRS) sensor for detecting opioid-induced cardiorespiratory depression, (ii) a MOSFET switch, and (iii) a Zero-Voltage Switching (ZVS) modified electromagnetic field generator. Using artery brachial occlusion experiments involving human subjects (n = 8), we were able to consistently demonstrate low oxygenation events. Additionally, our device exhibited the ability to release the drug within 10 seconds of detecting a low oxygen event. We observed significant differences in the peak values of oxyhemoglobin and deoxyhemoglobin before and after the low-oxygenation events (p < 0.050). While further human experiments are necessary, our results to date indicate the potential of our device as a tool in the battle against the continuing opioid pandemic.

 

 

*Join Zoom Meeting

https://purdue-edu.zoom.us/j/98231659969?pwd=T21Oa1B6QzFyQzFvckMzS1doNGlJUT09

 

Meeting ID: 982 3165 9969

Passcode: biomedical

 

 

Liz Rowen

She/Her


Graduate Program Assistant
Weldon School of Biomedical Engineering

 

Martin C. Jischke Hall of Biomedical Engineering
206 S. Martin Jischke Drive
West Lafayette, IN 47907-2032

o: 765-494-1197

7054E290