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Treating Porcine Abscesses With Histotripsy: A Pilot Study
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Abstract
Infected abscesses are walled-off collections of pus and bacteria. They are a common
sequela
of complications in the setting of surgery, trauma, systemic infections, and other disease states. Current treatment is typically limited to antibiotics with long-term catheter drainage, or surgical wash-out when inaccessible to percutaneous drainage or unresponsive to initial care efforts. Antibiotic resistance is also a growing concern. Although bacteria can develop drug resistance, they remain susceptible to thermal and mechanical damage. In particular, short pulses of focused ultrasound (
i
.
e
., histotripsy) generate mechanical damage through localized cavitation, representing a potential new paradigm for treating abscesses non-invasively, without the need for long-term catheterization and antibiotics. In this pilot study, boiling and cavitation histotripsy treatments were applied to subcutaneous and intramuscular abscesses developed in a novel porcine model. Ultrasound imaging was used to evaluate abscess maturity, for treatment monitoring and assessment of post-treatment outcomes. Disinfection was quantified by counting bacteria colonies from samples aspirated before and after treatment. Histopathological evaluation of the abscesses was performed to identify changes resulting from histotripsy treatment and potential collateral damage. Cavitation histotripsy was more successful in reducing the bacterial load while having a smaller treatment volume compared with boiling histotripsy. The results of this pilot study suggest focused ultrasound may lead to a technology for
in situ
treatment of acoustically accessible abscesses.
Title: Treating Porcine Abscesses With Histotripsy: A Pilot Study
Description:
Abstract
Infected abscesses are walled-off collections of pus and bacteria.
They are a common
sequela
of complications in the setting of surgery, trauma, systemic infections, and other disease states.
Current treatment is typically limited to antibiotics with long-term catheter drainage, or surgical wash-out when inaccessible to percutaneous drainage or unresponsive to initial care efforts.
Antibiotic resistance is also a growing concern.
Although bacteria can develop drug resistance, they remain susceptible to thermal and mechanical damage.
In particular, short pulses of focused ultrasound (
i
.
e
.
, histotripsy) generate mechanical damage through localized cavitation, representing a potential new paradigm for treating abscesses non-invasively, without the need for long-term catheterization and antibiotics.
In this pilot study, boiling and cavitation histotripsy treatments were applied to subcutaneous and intramuscular abscesses developed in a novel porcine model.
Ultrasound imaging was used to evaluate abscess maturity, for treatment monitoring and assessment of post-treatment outcomes.
Disinfection was quantified by counting bacteria colonies from samples aspirated before and after treatment.
Histopathological evaluation of the abscesses was performed to identify changes resulting from histotripsy treatment and potential collateral damage.
Cavitation histotripsy was more successful in reducing the bacterial load while having a smaller treatment volume compared with boiling histotripsy.
The results of this pilot study suggest focused ultrasound may lead to a technology for
in situ
treatment of acoustically accessible abscesses.
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