Area of research
Biomedical Engineering · Cellular and Molecular Neuroscience
Research interest
Research interests include Advanced Sensor and Energy Harvesting Materials, Neuroscience and Neural Engineering, Photoreceptor and optogenetics research, and Molecular Communication and Nanonetworks.
Continuous operation of battery-free implants enables advanced fracture recovery monitoring
Wearable continuous diffusion-based skin gas analysis
Chronic, Battery‐Free, Fully Implantable Multimodal Spinal Cord Stimulator for Pain Modulation in Small Animal Models
Wireless Battery-free and Fully Implantable Organ Interfaces
Towards a digitally connected body for holistic and continuous health insight
Biosymbiotic haptic feedback - Sustained long term human machine interfaces
Fully implanted battery-free high power platform for chronic spinal and muscular functional electrical stimulation
Context-aware electromagnetic design for continuously wearable biosymbiotic devices
Biosymbiotic 3-D-Printed Planar Inverted-F Antenna
Biosymbiotic platform for chronic long-range monitoring of biosignals in limited resource settings
Wearable devices for continuous monitoring of biosignals: Challenges and opportunities
Wireless, fully implantable cardiac stimulation and recording with on-device computation for closed-loop pacing and defibrillation
Wireless, Battery-Free Implants for Electrochemical Catecholamine Sensing and Optogenetic Stimulation
Open thoracic surgical implantation of cardiac pacemakers in rats
Wireless and battery-free technologies for neuroengineering
Wireless, battery-free, and fully implantable electrical neurostimulation in freely moving rodents
Wireless and battery-free platforms for collection of biosignals
Wireless, battery-free, subdermally implantable platforms for transcranial and long-range optogenetics in freely moving animals
Osseosurface electronics—thin, wireless, battery-free and multimodal musculoskeletal biointerfaces
Activation of the dorsal, but not the ventral, hippocampus relieves neuropathic pain in rodents
Wireless battery free fully implantable multimodal recording and neuromodulation tools for songbirds
Biosymbiotic, personalized, and digitally manufactured wireless devices for indefinite collection of high-fidelity biosignals
Nicotine Sensors for Wearable Battery-Free Monitoring of Vaping
Sweat-activated biocompatible batteries for epidermal electronic and microfluidic systems
Wireless, battery-free subdermally implantable photometry systems for chronic recording of neural dynamics
Excitatory VTA to DH projections provide a valence signal to memory circuits
Skin-interfaced soft microfluidic systems with modular and reusable electronics for <i>in situ</i> capacitive sensing of sweat loss, rate and conductivity
Bio-Integrated Wearable Systems: A Comprehensive Review
Skin-integrated wireless haptic interfaces for virtual and augmented reality
Battery-free, skin-interfaced microfluidic/electronic systems for simultaneous electrochemical, colorimetric, and volumetric analysis of sweat