[Control and monitoring of focal thermotherapy with magnetic resonance tomography. An overview].
Authors: Mueller-Lisse UG, Heuck AF
Minimally invasive thermotherapies for focal tissue destruction on the basis of laser-, microwave-, focused ultrasound-, or cryogen-induced changes of tissue temperature represent an alternative to surgical tissue ablation, particularly in the treatment of tumors. The thermotherapy modalities listed necessitate indirect guidance and monitoring, since they often do not lend themselves to immediate visual control. In the brain, in head and neck tumors, in the liver, and in the prostate, MRI reliably and accurately delineates both the positions of interstitial thermotherapy applicators and--in contrast-enhanced, T1-weighted images--the perfusion defects in tissue necrosis induced by thermotherapy. The transfer of results of in-vitro and in-vivo model studies to assess interstitial temperature and lesion development during thermotherapy to the actual treatment of patients, however, is still in an initial phase. Further development of both rapid MRI sequences and MRI scanners suited for interventions will show how far treatment systems and guidance systems can be adapted to one another.
Introduction
Purpose
Thermal ablation
Study Objective
To review and summarize methods for controlling and monitoring focal thermotherapy using magnetic resonance tomography.
MRI or image guidance method
Magnetic resonance tomography (MRI)
Outcomes and Safety
Summary of Outcomes
Magnetic resonance tomography (MRI) enables real-time control and monitoring of focal thermotherapy, allowing precise localization and temperature mapping to improve targeting and safety of thermal treatments. The paper does not report testing specific focused ultrasound parameters.
Safety-related matter
The provided text contains only the title and includes no information about safety or adverse effects; no adverse effects are reported.
Brain Region
Ultrasound Parameters
Focal Characteristics
focal depth: None; focal length: None; aperture size: None
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