Organ-specific, multimodal, wireless optoelectronics for high-throughput phenotyping of peripheral neural pathways

WS Kim, S Hong, M Gamero, V Jeevakumar… - Nature …, 2021 - nature.com
The vagus nerve supports diverse autonomic functions and behaviors important for health
and survival. To understand how specific components of the vagus contribute to behaviors …

AI-enabled, implantable, multichannel wireless telemetry for photodynamic therapy

WS Kim, MI Khot, HM Woo, S Hong, DH Baek… - Nature …, 2022 - nature.com
Photodynamic therapy (PDT) offers several advantages for treating cancers, but its efficacy
is highly dependent on light delivery to activate a photosensitizer. Advances in wireless …

Fully implantable low-power high frequency range optoelectronic devices for dual-channel modulation in the brain

WS Kim, M Jeong, S Hong, B Lim, SI Park - Sensors, 2020 - mdpi.com
Wireless optoelectronic devices can deliver light to targeted regions in the brain and
modulate discrete circuits in an animal that is awake. Here, we propose a miniaturized fully …

Multimodal sensing capabilities for the detection of shunt failure

M Gamero, WS Kim, S Hong, D Vorobiev, CD Morgan… - Sensors, 2021 - mdpi.com
Hydrocephalus is a medical condition characterized by the abnormal accumulation of
cerebrospinal fluid (CSF) within the cavities of the brain called ventricles. It frequently follows …

AI-driven high-throughput automation of behavioral analysis and dual-channel wireless optogenetics for multiplexing brain dynamics

WS Kim, J Liu, Q Li, S Hong, K Qi, R Cherukuri… - bioRxiv, 2021 - biorxiv.org
Advances in behavioral optogenetics are limited by the absence of high-throughput
pipelines for the automated analysis of behavior in freely behaving animals. Although a …

[引用][C] Organ-specific, multimodal, wireless optogenetics for high-throughput phenotyping of peripheral neural pathways

WS Kim - 2021