Pitt Shield

In vivo histotripsy brain treatment.

Authors: Sukovich JR, Cain CA, Pandey AS, Chaudhary N, Camelo-Piragua S, Allen SP, Hall TL, Snell J, Xu Z, Cannata JM, Teofilovic D, Bertolina JA, Kassell N, Xu Z

Histotripsy is an ultrasound-based treatment modality relying on the generation of targeted cavitation bubble clouds, which mechanically fractionate tissue. The purpose of the current study was to investigate the in vivo feasibility, including dosage requirements and safety, of generating well-confined destructive lesions within the porcine brain utilizing histotripsy technology. Following a craniectomy to open an acoustic window to the brain, histotripsy pulses were delivered to generate lesions in the porcine cortex. Large lesions with a major dimension of up to 1 cm were generated to demonstrate the efficacy of histotripsy lesioning in the brain. Gyrus-confined lesions were generated at different applied dosages and under ultrasound imaging guidance to ensure that they were accurately targeted and contained within individual gyri. Clinical evaluation as well as MRI and histological outcomes were assessed in the acute (≤ 6 hours) and subacute (≤ 72 hours) phases of recovery. Histotripsy was able to generate lesions with a major dimension of up to 1 cm in the cortex. Histotripsy lesions were seen to be well demarcated with sharp boundaries between treated and untreated tissues, with histological evidence of injuries extending ≤ 200 µm from their boundaries in all cases. In animals with lesions confined to the gyrus, no major hemorrhage or other complications resulting from treatment were observed. At 72 hours, MRI revealed minimal to no edema and no radiographic evidence of inflammatory changes in the perilesional area. Histological evaluation revealed the histotripsy lesions to be similar to subacute infarcts. Histotripsy can be used to generate sharply defined lesions of arbitrary shapes and sizes in the swine cortex. Lesions confined to within the gyri did not lead to significant hemorrhage or edema responses at the treatment site in the acute or subacute time intervals.

Introduction

Purpose Thermal ablation
Study Objective To investigate the in vivo feasibility, dosage requirements, and safety of generating well-confined destructive lesions in the porcine brain using histotripsy.
Animal model / Human subject Pig (porcine/swine); strain: not reported; age: not reported; sex: not reported
Disease model Healthy
MRI or image guidance method Ultrasound imaging guidance
Targeted brain region(s) Porcine Cortex (Individual Gyri)

Outcomes and Safety

Summary of Outcomes Histotripsy produced sharply demarcated, mechanically fractionated cortical lesions up to ~1 cm in swine with histological injury extending ≤200 μm from lesion margins and gyrus-confined lesions showing no major hemorrhage or significant edema acutely or at 72 hours. The study tested different applied dosages under ultrasound guidance, and the dosages that produced gyrus-confined lesions were successful in generating well-contained lesions without significant hemorrhage or edema.
Duration of biological effect 72 hours
Safety-related matter No major hemorrhage or other complications were observed in animals with gyrus-confined lesions; MRI at 72 hours showed minimal to no edema and no radiographic evidence of inflammatory changes. Histology showed sharply demarcated injury with effects extending ≤200 μm from lesion boundaries and lesions resembling subacute infarcts.

Brain Region

Ultrasound Parameters

FUS Mode pulsed
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency Single session

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