Videos

Using computational modelling to predict RF heating in implantable devices

Videos

Using computational modelling to predict RF heating in implantable devices

MRI-safe implantable devices are evolving quickly, but one challenge still stands out: MRI-induced heating. Qing Liu from our Wearables and Implantables team explains how to address the challenge of tissue heating which limits device safety. Using computational modelling, she explains how to predict RF-induced heating, enabling earlier design exploration and reducing reliance on physical testing.

Talk to us about your next project

Watch the video

Last Updated
September 15, 2026
Biosensor device development
Cardiovascular and neurovascular system development
Neurotechnology device development
Qing Liu

Use AI to summarise this article

Share

You might also like

Talk to us about your next project

We help clients with all stages of their most complex and challenging technology and product development projects.



If you're considering the next steps along your innovation journey, why not get in touch?

Thank you! Your submission has been received!
Oops! Something went wrong while submitting the form.

Form unavailable due to browser restrictions.

Your current browser or privacy settings may prevent this form from appearing. Please enable third-party scripts or submit your details through [email protected]

Get the latest from TTP

Join our community to get the latest news and updates on our work at TTP.

You will occasionally receive expert insights from across our areas of focus and hear directly from our engineers and scientists on the newest developments in the field.

Get the latest from TTP

Join our community to get the latest news and updates on our work at TTP.

Form unavailable due to browser restrictions.

Your current browser or privacy settings may prevent this form from appearing. Please enable third-party scripts or submit your details through [email protected]

Want to work 
at TTP?

Find open positions and contact us to learn more.

Overlay title

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Suspendisse varius enim in eros elementum tristique.