Skin-like Electronics

Skin-like electronics are flexible, stretchable electronic systems designed to conform to curved, moving surfaces while sensing or delivering signals, making them important for bioengineering and human-centered devices. They typically combine deformable substrates, conductive materials, and sensors that convert mechanical, thermal, or biochemical changes at an interface into measurable electrical signals while maintaining function during bending and stretching. This skin-like behavior supports wearable health monitoring, prosthetic feedback, soft robotics, and human-machine interfaces by improving contact with the body and capturing physiologically relevant information. Research aims to enhance sensitivity, durability, comfort, and integration with biological tissues, enabling more natural interactions between living systems and electronic technologies.

Skin-like Electronics - Related Videos

Research

JoVE Journal - Bioengineering

Fabrication and Characterization of a Conformal Skin-like Electronic System for Quantitative, Cutaneous Wound Management

0 Views •

Cited by 7 •

2015

This article presents methods to fabricate and characterize a conformal, skin-like electronic system and protocols for the use in clinical applications, particularly on cutaneous wound management.

Skin Biopsy for Diagnosing Discoid Lupus Erythematosus

0 Views •

Cited by 2 •

2025

Skin lesions are common and important features in many rheumatic diseases, and biopsy with pathological analysis plays a critical role in diagnosis. This article provides a detailed overview of the standardized skin biopsy procedure and, using discoid lupus erythematosus as an example, highlights the essential role of dermatopathology in diagnosing rheumatic diseases.

Education

JoVE Core - Biology

Electron Carriers

0 Views •

2019

Electron carriers can be thought of as electron shuttles. These compounds can easily accept electrons (i.e., be reduced) or lose them (i.e., be oxidized). They play an essential role in energy production because cellular respiration is contingent on the flow of electrons. Over the many stages of cellular respiration, glucose breaks down into carbon dioxide and water. Electron carriers pick up electrons lost by glucose in these reactions, temporarily storing and releasing them into the electron...

Electron Affinity

0 Views •

2020

The electron affinity (EA) is the energy change for adding an electron to a gaseous atom to form an anion (negative ion). This process can be either endothermic or exothermic, depending on the element. Many of these elements have negative values of EA, which means that energy is released when the gaseous atom accepts an electron. However, for some elements, energy is required for the atom to become negatively charged, and the value of their EA is positive. Just as with ionization energy,...

Generation of Organotypic Full Skin Reconstructs: A Procedure to Establish 3D Skin Model Using Human Skin Samples

0 Views •

2023

This video describes the detailed protocol for generating in vitro 3D organotypic skin reconstructs to study melanoma progression. This skin model mimics both the architecture and multicellular complexity of organs in vivo.

View All Results

FAQs

Related Topics