AI Article Synopsis

  • The study aimed to assess if histotripsy could effectively create large-scale liver ablations in pigs without causing significant thermal damage to surrounding tissues.
  • During the experiment, histotripsy was used on six female pigs, resulting in well-defined ablation zones with complete tissue necrosis and minimal off-target effects.
  • The findings suggest that using longer treatment times to cool the body wall allowed for effective transcostal hepatic ablation without severe injuries, indicating the approach's feasibility and effectiveness in a porcine model.

Article Abstract

Purpose: To determine whether histotripsy can create human-scale transcostal ablations in porcine liver without causing severe thermal wall injuries along the beam path.

Materials And Methods: Histotripsy was applied to the liver using a preclinical prototype robotic system through a transcostal window in six female swine. A 3.0 cm spherical ablation zone was prescribed. Duration of treatment (75 min) was longer than a prior subcostal treatment study (24 min, 15 s) to minimize beam path heating. Animals then underwent contrast-enhanced MRI, necropsy, and histopathology. Images and tissue were analyzed for ablation zone size, shape, completeness of necrosis, and off-target effects.

Results: Ablation zones demonstrated complete necrosis with no viable tissue remaining in 6/6 animals by histopathology. Ablation zone volume was close to prescribed (13.8 ± 1.8 cm vs. prescribed 14.1 cm). Edema was noted in the body wall overlying the ablation on T2 MRI in 5/5 (one animal did not receive MRI), though there was no gross or histologic evidence of injury to the chest wall at necropsy. At gross inspection, lung discoloration in the right lower lobe was present in 5/6 animals (mean size: 1 × 2 × 4 cm) with alveolar hemorrhage, preservation of blood vessels and bronchioles, and minor injuries to pneumocytes noted at histology.

Conclusion: Transcostal hepatic histotripsy ablation appears feasible, effective, and no severe injuries were identified in an acute porcine model when prolonged cooling time is added to minimize body wall heating.

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http://dx.doi.org/10.1007/s00270-021-02914-1DOI Listing

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