This review serves as an update to the parent article, highlighting advances in therapeutic ultrasound over the past 12 years.
First-pass extracted concept
therapeutic ultrasound
Aliases
ultrasound, US
Evidence Snippets
Non-invasive ultrasound (US) treatment approaches are becoming increasingly recognized for their therapeutic potential for reversibly permeabilizing the blood-brain barrier (BBB), targeting therapeutic delivery deep into the brain, and neuromodulation.
Supporting Sources
Linked Claims
The review discusses computational modeling, tissue-mimicking phantoms, and quality assurance protocols as topics relevant to translation of therapeutic ultrasound.
The review outlines general mechanisms for bioeffects produced by therapeutic ultrasound, current applications, and pre-clinical and clinical stages.
The review provides an overview of image guidance methods for monitoring and assessing therapeutic ultrasound treatment progress.
This article updates a 2012 review by summarizing advances in therapeutic ultrasound over the prior 12 years.
Therapeutic ultrasound could enable less invasive and more effective management of neurological disorders associated with the basal ganglia.
We demonstrate that this cutting-edge method could transform the way neurological disorders associated with the basal ganglia are managed, opening the door to less invasive and more effective treatments.
Animal studies and early clinical trials using ultrasound as a therapeutic modality have shown promising outcomes for controlling symptom severity while preserving neural tissue.
Studies conducted on animals and early clinical trials using ultrasound as a therapeutic modality have demonstrated promising outcomes for controlling symptom severity while preserving neural tissue.
Non-invasive ultrasound treatment approaches have therapeutic potential for reversible blood-brain barrier permeabilization, deep-brain therapeutic delivery, and neuromodulation.
Non-invasive ultrasound (US) treatment approaches are becoming increasingly recognized for their therapeutic potential for reversibly permeabilizing the blood-brain barrier (BBB), targeting therapeutic delivery deep into the brain, and neuromodulation.