Novel Cranial Implants of Yttria-Stabilized Zirconia as Acoustic Windows for Ultrasonic Brain Therapy.
Authors: Gutierrez MI, Penilla EH, Leija L, Vera A, Garay JE, Aguilar G
Therapeutic ultrasound can induce changes in tissues by means of thermal and nonthermal effects. It is proposed for treatment of some brain pathologies such as Alzheimer's, Parkinson's, Huntington's diseases, and cancer. However, cranium highly absorbs ultrasound reducing transmission efficiency. There are clinical applications of transcranial focused ultrasound and implantable ultrasound transducers proposed to address this problem. In this paper, biocompatible materials are proposed for replacing part of the cranium (cranial implants) based on low porosity polycrystalline 8 mol% yttria-stabilized-zirconia (8YSZ) ceramics as acoustic windows for brain therapy. In order to assess the viability of 8YSZ implants to effectively transmit ultrasound, various 8YSZ ceramics with different porosity are tested; their acoustic properties are measured; and the results are validated using finite element models simulating wave propagation to brain tissue through 8YSZ windows. The ultrasound attenuation is found to be linearly dependent on ceramics' porosity. Results for the nearly pore-free case indicate that 8YSZ is highly effective in transmitting ultrasound, with overall maximum transmission efficiency of ≈81%, compared to near total absorption of cranial bone. These results suggest that 8YSZ polycrystals could be suitable acoustic windows for ultrasound brain therapy at 1 MHz.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To develop and evaluate yttria-stabilized zirconia cranial implants as acoustic windows to enable ultrasonic brain therapy.
Animal model / Human subject
Bovine Cranial
Outcomes and Safety
Summary of Outcomes
The paper reports yttria-stabilized zirconia cranial implants function as acoustic windows to enable ultrasonic brain therapy; specific biological or behavioral effects were not provided in the supplied text, nor were any focused ultrasound parameters reported.
Safety-related matter
No safety issues or adverse effects are mentioned in the provided excerpt of the paper; the text contains only the title and no details regarding safety or adverse events.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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