Movement Sensors

Movement sensors are biological or engineered systems that detect motion, position, acceleration, or changes in force, making movement measurable for scientific analysis. In neuroscience, proprioceptors such as muscle spindles and Golgi tendon organs encode muscle length and tension, while vestibular hair cells respond to head rotation and linear acceleration; these signals travel to the central nervous system for integration with vision and motor commands. Researchers use movement sensors to investigate motor control, balance, coordination, reflexes, and neurological disorders. Combining physiological recordings with wearable or laboratory-based motion tracking can reveal how the brain and body produce, regulate, and adapt movement.

Movement Sensors - Related Videos

Research

JoVE Journal - Neuroscience

Eye Movement Monitoring of Memory

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Cited by 10 •

2010

Eye movement monitoring (or eye tracking) reveals where in space the eyes linger, when and for how long. Here, we demonstrate how eye tracking can be used to investigate the integrity of memory in multiple participant populations, without requiring verbal, or otherwise explicit, reports.

Education

JoVE Science Education - Chemistry

Glovebox and Impurity Sensors

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2023

Source: Tamara M. Powers, Department of Chemistry, Texas A&M University The glovebox provides a straightforward means to handle air- and moisture-sensitive solids and liquids. The glovebox is what it sounds like: a box with gloves attached to one or more sides, which allows the user to perform manipulations within the glovebox under an inert atmosphere. For manipulations under inert atmospheres, chemists can choose between Schlenk or high-vacuum techniques and a glovebox. Schlenk and...

Bacterial Detection & Identification Using Electrochemical Sensors

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Cited by 6 •

2013

We describe an electrochemical sensor assay method for rapid bacterial detection and identification. The assay involves a sensor array functionalized with DNA oligonucleotide capture probes for ribosomal RNA (rRNA) species-specific sequences. Sandwich hybridization of target rRNA with the capture probe and a horseradish peroxidase-linked DNA oligonucleotide detector probe produces a measurable amperometric current.

Glutamine Flux Imaging Using Genetically Encoded Sensors

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Cited by 7 •

2014

This article will demonstrate how to monitor glutamine dynamics in live cells using FRET. Genetically encoded sensors allow real-time monitoring of biological molecules at a subcellular resolution. Experimental design, technical details of the experimental settings, and considerations for post-experimental analyses will be discussed for genetically encoded glutamine sensors.

Anatomical Movements

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2023

Anatomical movements refer to the various actions or motions that can be performed by the body's joints and muscles. These movements are described using specific terms to provide a standardized way of discussing and understanding the range of motion at different joints. Here are some common anatomical movements: Flexion and extension motions are in the sagittal (anterior–posterior) plane of motion. These movements take place at the shoulder, hip, elbow, knee, wrist, metacarpophalangeal,...

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