Pitt Shield

Adaptive Ultrasound Focusing Through the Cranial Bone for Non-invasive Treatment of Brain Disorders.

Authors: Bancel T, Tiennot T, Aubry JF

Focused ultrasound holds great promise in therapy for its ability to target non-invasively deep seated tissues with non-ionizing therapeutic beams. Nevertheless, brain applications have been hampered for decades by the presence of the skull. The skull indeed strongly reflects, refracts and absorbs ultrasound, which defocuses the therapeutic ultrasound beams. In this chapter, we will first show how the structure of the skull impacts the ultrasound beams and how it narrows the frequency range that can be envisioned for transcranial therapy. We will then introduce different methods that have been developed and optimized to compensate the defocusing effect of the bone. Finally, we will provide an overview of past, current and future treatments of brain disorders.

Introduction

Purpose Thermal ablation
Study Objective To develop and evaluate an adaptive ultrasound focusing technique that compensates for cranial bone effects to enable non-invasive treatment of brain disorders.
Disease model brain disorders

Outcomes and Safety

Summary of Outcomes No biological or behavioral effects are reported in the provided text, and no focused ultrasound parameters were specified as successful.
Safety-related matter The provided excerpt contains only the paper title and includes no mention of safety considerations or adverse effects.

Brain Region

Visualization unavailable

Ultrasound Parameters

Focal Characteristics focal depth: None; focal length: None; aperture size: None

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