Pitt Shield

Ultrasound-Guided Mechanical High-Intensity Focused Ultrasound (Histotripsy) Through an Acoustically Permeable Polyolefin-Based Cranioplasty Device.

Authors: Ruger L, Langman M, Farrell R, Rossmeisl JH, Prada F, Vlaisavljevich E

Histotripsy is a non-thermal focused ultrasound therapy in development for the non-invasive ablation of cancerous tumors. Intracranial histotripsy has been limited by significant pressure attenuation through the skull, requiring large, complex array transducers to overcome this effect. Recently, a biocompatible, polyolefin-based cranioplasty device was developed to allow ultrasound (US) transmission into the intracranial space with minimal distortion. In this study, we investigated the in vitro feasibility of applying US-guided histotripsy procedures across the prosthesis. Pressure waveforms and beam profiles were collected for single- and multi-element histotripsy transducers. Then, high-speed optical images of the bubble cloud with and without the prosthesis were collected in water and tissue-mimicking agarose gel phantoms. Finally, red blood cell (RBC) tissue phantom and excised brain tissue experiments were completed to test the ablative efficacy across the prosthesis. Single element tests revealed increased pressure loss with increasing transducer frequency and increasing transducer-to-prosthesis angle. Array transducer measurements at 1 MHz showed average pressure losses of >50% across the prosthesis. Aberration correction recovered up to 18% of the pressure lost, and high-speed optical imaging in water, agarose gels, and RBC phantoms demonstrated that histotripsy bubble clouds could be generated across the prosthesis at pulse repetition frequencies of 50-500 Hz. Histologic analysis revealed a complete breakdown of brain tissue treated across the prosthesis. Conclusion & Significance: Overall, the results of this study demonstrate that the cranial prosthesis may be used as an acoustic window through which intracranial histotripsy can be applied under US guidance without the need for large transcranial array transducers.

Introduction

Purpose Thermal ablation
Study Objective To evaluate the feasibility of performing ultrasound-guided mechanical high-intensity focused ultrasound (histotripsy) through an acoustically permeable polyolefin-based cranioplasty device.
MRI or image guidance method Ultrasound guidance

Outcomes and Safety

Summary of Outcomes The paper reports feasibility of ultrasound-guided mechanical high-intensity focused ultrasound (histotripsy) delivered through an acoustically permeable polyolefin cranioplasty device, enabling targeted mechanical tissue disruption; however, no specific biological/behavioral outcomes or detailed histotripsy parameter sets were provided in the supplied text.
Safety-related matter The provided text contains only the paper title and does not mention any safety-related matters or adverse effects.

Brain Region

Visualization unavailable

Ultrasound Parameters

FUS Mode pulsed
Focal Characteristics focal depth: None; focal length: None; aperture size: None

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

← Back to Search