» Articles » PMID: 24785433

In Vivo Transcostal Histotripsy Therapy Without Aberration Correction

Overview
Journal Phys Med Biol
Publisher IOP Publishing
Date 2014 May 3
PMID 24785433
Citations 28
Authors
Affiliations
Soon will be listed here.
Abstract

This study investigates the in vivo therapeutic capabilities of transcostal histotripsy without using aberration correction mechanisms and its thermal impact on overlying tissues. Non-invasive liver treatments were conducted in eight pigs, with four lesions generated through transcostal windows with full ribcage obstruction and four lesions created through transabdominal windows without rib coverage. Treatments were performed by a 750 kHz focused transducer using 5 cycle pulses at 200 Hz PRF, with estimated in situ peak negative pressures of 13-17 MPa. Temperatures on overlying tissues including the ribs were measured with needle thermocouples inserted superficially beneath the skin. Treatments of approximately 40 min were applied, allowing overlying tissue temperatures to reach saturation. Lesions yielded statistically comparable ablation volumes of 3.6 ± 1.7 cm(3) and 4.5 ± 2.0 cm(3) in transcostal and transabdominal treatments, respectively. The average temperature increase observed in transcostal treatments was 3.9 ± 2.1 °C, while transabdominal treatments showed an increase of 1.7 ± 1.3 °C. No damage was seen on the ribcage or other overlying tissues. These results indicate that histotripsy can achieve effective treatment through the ribcage in vivo without requiring correction mechanisms, while inducing no substantial thermal effects or damage to overlying tissues. Such capabilities could benefit several non-invasive therapy applications involving transcostal treatment windows.

Citing Articles

Evaluation of targeting accuracy of cone beam CT guided histotripsy in an porcine model.

Wagner M, Minesinger G, Falk K, Kutlu A, Kisting M, Speidel M Int J Hyperthermia. 2025; 42(1):2455138.

PMID: 39842812 PMC: 11784921. DOI: 10.1080/02656736.2025.2455138.


Overview of Therapeutic Ultrasound Applications and Safety Considerations: 2024 Update.

Bader K, Padilla F, Haworth K, Ellens N, Dalecki D, Miller D J Ultrasound Med. 2024; 44(3):381-433.

PMID: 39526313 PMC: 11796337. DOI: 10.1002/jum.16611.


Ultrasonic Nakagami imaging for automatically positioning and identifying the treated lesion induced by histotripsy.

Han M, Song W, Lei K, Cai B, Qin D Ultrason Sonochem. 2024; 109:107002.

PMID: 39084943 PMC: 11384263. DOI: 10.1016/j.ultsonch.2024.107002.


In Vivo Cavitation-Based Aberration Correction of Histotripsy in Porcine Liver.

Yeats E, Lu N, Stocker G, Komaiha M, Sukovich J, Xu Z IEEE Trans Ultrason Ferroelectr Freq Control. 2024; 71(8):1019-1029.

PMID: 38837932 PMC: 11479660. DOI: 10.1109/TUFFC.2024.3409638.


Non-Thermal Liver Ablation: Existing and New Technology.

Nakla T, Chow J, Pham K, Abi-Jaoudeh N Semin Intervent Radiol. 2024; 40(6):497-504.

PMID: 38274216 PMC: 10807968. DOI: 10.1055/s-0043-1777844.