Magnetic Sphere Heating

Magnetic sphere heating is a method of converting electromagnetic energy into heat within or around magnetically responsive spherical materials. In an alternating magnetic field, magnetic moments rotate or reverse, while induced domain motion and, for conductive spheres, eddy currents dissipate energy as heat. This response depends on material composition, sphere size, field strength, and frequency, allowing engineers to tune heating rates. The technique supports magnetic hyperthermia research, materials processing, thermal treatment, and localized heating in microfluidic or biomedical systems. Understanding heat generation and transfer helps improve efficiency, temperature control, and safe integration into engineered devices.

Magnetic Sphere Heating - Related Videos

Research

JoVE Journal - Engineering

Near-Infrared Temperature Measurement Technique for Water Surrounding an Induction-heated Small Magnetic Sphere

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Cited by 4 •

2018

A technique utilizing wavelengths of 1150 and 1412 nm to measure the temperature of water surrounding an induction-heated small magnetic sphere is presented.

Generating 3D Co-culture Spheres of Astrocytes and Neurons to Induce Synapse Formation

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2025

This video demonstrates a procedure for co-culturing the astrocytes and neurons to form 3D spheres. These 3D spheres provide a distinct platform for examining synapse formation and neural network integration, thereby serving as a potential model for research in developmental neuroscience, neurodegenerative diseases, and neuropharmacological interventions.

Education

JoVE Science Education - Engineering

Turbulence Sphere Method: Evaluating Wind Tunnel Flow Quality

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2023

Source: Jose Roberto Moreto and Xiaofeng Liu, Department of Aerospace Engineering, San Diego State University, San Diego, CA Wind tunnel tests are useful in the design of vehicles and structures that are subjected to airflow during their use. Wind tunnel data are generated by applying a controlled air flow to a model of the object being studied. The test model usually has a similar geometry but is a smaller scale compared to the full-sized object. To ensure accurate and useful data is collected...

Utilizing Multielectrode Arrays to Measure Synaptic Physiology in 3D Coculture Spheres

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2025

This video demonstrates the procedure of using the multielectrode array (MEA) to measure synaptic physiology in 3D coculture spheres. This method allows to understand the neural network dynamics and synaptic network burst activity within the 3D spheres.

Custom-designed Laser-based Heating Apparatus for Triggered Release of Cisplatin from Thermosensitive Liposomes with Magnetic Resonance Image Guidance

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Cited by 17 •

2015

AN MRI-compatible custom-designed laser-based heating apparatus has been developed to provide local heating of subcutaneous tumors in order to activate release of agents from thermosensitive liposomes specifically at the tumor region.

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