Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
EMG Measurement: Electrode Types and Signal Analysis
Graph Chatbot
Related lectures (32)
Passive Behavior Analysis
Explores the analysis of passive muscle behavior and its impact on stiffness.
Negative Feedback: Body Temperature Regulation
Explores negative feedback in body temperature regulation and how it maintains core temperature around 37°C.
Neural Signals and Signal Processing
Explores neural signal processing for brain-computer interfaces, including decoding techniques like Kalman filters and spike sorting.
Electrical Stimulation for Actuation
Covers techniques for restoring motor functions through electrical stimulation, including electrode types and applications, muscle fatigue challenges, and epidural spinal cord stimulation for intentional movement restoration.
Optimization of Neuroprosthetic Systems
Explores the optimization of neuroprosthetic systems, including sensory feedback restoration and neural stimulation strategies.
Neural Signals and Signal Processing
Explores neural signals, EMG processing, muscle synergies, and prosthetic control using advanced signal processing techniques.
Muscle Contraction: Length vs. Force
Investigates how muscle length affects force generation during contractions through an experimental approach.
Epididymis: Histological Structure and Function
Explores the histological structure and function of the epididymis, emphasizing cell types and secretion processes.
Analyzing Excitability: Force and Stimulus in Muscle Contraction
Explores the analysis of excitability in muscle contraction, emphasizing force and stimulus relationship.
Biliary Vesicle Morphology
Explores the structure and function of the biliary vesicle as a bile reservoir.
Muscle Contraction: Speed vs Load
Delves into muscle contraction speed variations with load adjustments and force sensor movements.
Understanding Proprioception: Neural Network Models
Explores how neural networks can help understand proprioception and muscle contraction.
Previous
Page 2 of 2
Next