Hexia Guo

About Hexia Guo

Hexia Guo, With an exceptional h-index of 12 and a recent h-index of 12 (since 2020), a distinguished researcher at North Western University, specializes in the field of Bioresorbable electronics, implantable bioelectronics, wearable bioelectronics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Bioresorbable, wireless, passive sensors for continuous pH measurements and early detection of gastric leakage

Bioresorbable Multilayer Organic‐Inorganic Films for Bioelectronic Systems

Ultrathin, Transferred Layers of Silicon Oxynitrides as Tunable Biofluid Barriers for Bioresorbable Electronic Systems

Microfluidic systems for epidermal sampling and sensing

Self-powered, light-controlled, bioresorbable platforms for programmed drug delivery

Intramuscular Microvascular Flow Sensing for Flap Monitoring in a Porcine Model of Arterial and Venous Occlusion

3D-printed epidermal sweat microfluidic systems with integrated microcuvettes for precise spectroscopic and fluorometric biochemical assays

Percutaneously introduced wireless intramuscular near‐infrared spectroscopy device detects muscle oxygenation changes in porcine model of lower extremity compartment syndrome

Hexia Guo Information

University

Position

___

Citations(all)

1288

Citations(since 2020)

1219

Cited By

501

hIndex(all)

12

hIndex(since 2020)

12

i10Index(all)

12

i10Index(since 2020)

12

Email

University Profile Page

Google Scholar

Hexia Guo Skills & Research Interests

Bioresorbable electronics

implantable bioelectronics

wearable bioelectronics

Top articles of Hexia Guo

Microfluidic systems for epidermal sampling and sensing

2024/1/30

Intramuscular Microvascular Flow Sensing for Flap Monitoring in a Porcine Model of Arterial and Venous Occlusion

Journal of reconstructive microsurgery

2023/3

3D-printed epidermal sweat microfluidic systems with integrated microcuvettes for precise spectroscopic and fluorometric biochemical assays

Materials Horizons

2023

Percutaneously introduced wireless intramuscular near‐infrared spectroscopy device detects muscle oxygenation changes in porcine model of lower extremity compartment syndrome

Journal of Orthopaedic Research®

2023/1

Wireless probes for monitoring blood flow in biological tissue

2023/12/14

Wireless multi-lateral optofluidic microsystems for real-time programmable optogenetics and photopharmacology

Nature communications

2022/9/22

Implantable, wireless, self-fixing thermal sensors for continuous measurements of microvascular blood flow in flaps and organ grafts

Biosensors and Bioelectronics

2022/6/15

49. Intramuscular Microvascular Flow Sensing for Flap Monitoring in a Porcine Model of Arterial and Venous Occlusion

Plastic and Reconstructive Surgery–Global Open

2022/6/1

44. A Wireless Intramuscular Near-infrared Spectroscopy Device Detects Muscle Oxygenation Changes in Porcine Model of Lower Extremity Compartment Syndrome

Plastic and Reconstructive Surgery–Global Open

2022/6/1

Wireless implantable optical probe for continuous monitoring of oxygen saturation in flaps and organ grafts

Nature communications

2022/5/30

Implantable Bioelectronics for Monitoring and Stimulation: Toward Bioresorbable Electronics

2022

Hexia Guo
Hexia Guo

H-Index: 5

Implantation and control of wireless, battery-free systems for peripheral nerve interfacing

Journal of visualized experiments: JoVE

2021/10/20

Intramuscular near-infrared spectroscopy for muscle flap monitoring in a porcine model

Journal of reconstructive microsurgery

2022/5

Advanced materials in wireless, implantable electrical stimulators that offer rapid rates of bioresorption for peripheral axon regeneration

Advanced Functional Materials

2021/5/6

See List of Professors in Hexia Guo University(North Western University)

Co-Authors

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