Pitt Shield

A minimally invasive catheter-based ultrasound technology for therapeutic interventions in brain: initial preclinical studies.

Authors: Ghoshal G, Gee L, Heffter T, Williams E, Bromfield C, Rund L, Ehrhardt JM, Diederich CJ, Fischer GS, Pilitsis JG, Burdette EC

OBJECTIVE Minimally invasive procedures may allow surgeons to avoid conventional open surgical procedures for certain neurological disorders. This paper describes the iterative process for development of a catheter-based ultrasound thermal therapy applicator. METHODS Using an ultrasound applicator with an array of longitudinally stacked and angularly sectored tubular transducers within a catheter, the authors conducted experimental studies in porcine liver, in vivo and ex vivo, in order to characterize the device performance and lesion patterns. In addition, they applied the technique in a rodent model of Parkinson's disease to investigate the feasibility of its application in brain. RESULTS Thermal lesions with multiple shapes and sizes were readily achieved in porcine liver. The feasibility of catheter-based focused ultrasound in the treatment of brain conditions was demonstrated in a rodent model of Parkinson's disease. CONCLUSIONS The authors show proof of principle of a catheter-based ultrasound system that can create lesions with concurrent thermode-based measurements.

Introduction

Purpose Thermal ablation
Study Objective To develop and evaluate a catheter-based ultrasound thermal therapy applicator for minimally invasive creation of thermal lesions.
Animal model / Human subject Porcine (pig) — strain: not specified; age: not specified; sex: not specified; Rodent (Parkinson's disease model) — species/strain: not specified; age: not specified; sex: not specified
Disease model Parkinson's disease

Outcomes and Safety

Summary of Outcomes Catheter-based focused ultrasound using an array of longitudinally stacked and angularly sectored tubular transducers produced controllable thermal lesions of multiple shapes and sizes in porcine liver (in vivo and ex vivo) and was feasible for lesioning in a rodent model of Parkinson’s disease. Successful parameters included the longitudinally stacked and angularly sectored transducer geometry (catheter-based focused ultrasound) with concurrent thermode-based temperature measurements.
Safety-related matter The paper does not report any safety concerns or adverse effects; it only describes successful lesion creation and feasibility in porcine liver and a rodent Parkinson’s model.

Brain Region

Visualization unavailable

Ultrasound Parameters

Ultrasound instrument Catheter-based ultrasound applicator (array of longitudinally stacked and angularly sectored tubular transducers); manufacturer: None; transducer aperture/diameter: None
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency Single session

We are open to feedback. If you see a mistake or have a suggestion, please contact us.

← Back to Search