Lumos: An Open-Source Device for Wearable Spectroscopy Research
Authors
"Spectroscopy, the study of the interaction between electromagnetic radiation and matter, is a vital technique in many disciplines. This technique is limited to lab settings, and, as such, sensing is isolated and infrequent. Thus, it can only provide a brief snapshot of the monitored parameter. Wearable technology brings sensing and tracking technologies out into everyday life, creating longitudinal datasets that provide more insight into the monitored parameter. In this paper, we describe Lumos, an open-source device for wearable spectroscopy research. Lumos can facilitate on-body spectroscopy research in health monitoring, athletics, rehabilitation, and more. We developed an algorithm to determine the spectral response of a medium with a mean absolute error of 13nm. From this, researchers can determine the optimal spectrum and create customized sensors for their target application. We show the utility of Lumos in a pilot study, sensing of prediabetes, where we determine the relevant spectrum for glucose and create and evaluate a targeted tracking device. https://dl.acm.org/doi/10.1145/3569502"
Research Questions / Practical Problems
Question signals indexed for this paper.
Research Questions
3- How can an open-source wearable device supporting real-time, non-invasive spectral detection be designed?Category: Wearable Health Devices and Everyday SensingSimilar questionsarrow_forward
- How can this device address optical response fluctuations in dynamic environments?Category: Wearable Health Devices and Everyday SensingSimilar questionsarrow_forward
- Can this device match the accuracy of traditional benchtop spectrometers?Category: Wearable Health Devices and Everyday SensingSimilar questionsarrow_forward
Practical Problems
1- Spectroscopy is difficult to apply for real-time, continuous, non-invasive health monitoring in everyday environments.Category: Wearable Health Devices and Everyday SensingSimilar questionsarrow_forward
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