Skip to main content
Top

Fickian and Non-Fickian Transports in Ultrasound Enhanced Drug Delivery: Modeling and Numerical Simulation

  • 2022
  • OriginalPaper
  • Chapter
Published in:

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The chapter delves into the challenges of cancer treatment, particularly the limitations of traditional chemotherapy. It introduces ultrasound as a promising tool to enhance drug delivery, focusing on the physical and biological effects of ultrasound on tissue. The text discusses the modeling and numerical simulation of drug transport in both healthy and cancerous tissues, highlighting the role of viscoelasticity and the Zener model in describing drug behavior in cancer tissue. The chapter also presents numerical simulations demonstrating the efficacy of ultrasound in enhancing drug delivery, making it a valuable resource for specialists in the field.

Not a customer yet? Then find out more about our access models now:

Individual Access

Start your personal individual access now. Get instant access to more than 164,000 books and 540 journals – including PDF downloads and new releases.

Starting from 54,00 € per month!    

Get access

Access for Businesses

Utilise Springer Professional in your company and provide your employees with sound specialist knowledge. Request information about corporate access now.

Find out how Springer Professional can uplift your work!

Contact us now
Title
Fickian and Non-Fickian Transports in Ultrasound Enhanced Drug Delivery: Modeling and Numerical Simulation
Authors
Ebrahim Azhdari
Aram Emami
José Augusto Ferreira
Copyright Year
2022
DOI
https://doi.org/10.1007/978-3-031-14324-3_13
This content is only visible if you are logged in and have the appropriate permissions.

Premium Partner

    Image Credits
    Neuer Inhalt/© ITandMEDIA, Nagarro GmbH/© Nagarro GmbH, AvePoint Deutschland GmbH/© AvePoint Deutschland GmbH, AFB Gemeinnützige GmbH/© AFB Gemeinnützige GmbH, USU GmbH/© USU GmbH, Ferrari electronic AG/© Ferrari electronic AG