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1.
Ultrasound Med Biol ; 50(8): 1255-1261, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38762389

RESUMEN

OBJECTIVE: As an alternative to surgical excision and magnetic resonance-guided thermal high-intensity focused ultrasound ablation of uterine leiomyoma, this work was aimed at pilot feasibility demonstration of use of ultrasound-guided boiling histotripsy for non-invasive non-thermal fractionation of human uterine leiomyoma ex vivo. METHODS: A custom-made sector ultrasound transducer of 1.5-MHz operating frequency and nominal f-number F# = 0.75 was used to produce a volumetric lesion (two layers of 5 × 5 foci with a 1 mm step) in surgically resected human leiomyoma ex vivo. A sequence of 10 ms pulses (P+/P-/As = 157/-25/170 MPa in situ) with 1% duty cycle was delivered N = 30 times per focus under B-mode guidance. The treatment outcome was evaluated via B-mode imaging and histologically with hematoxylin and eosin and Masson's trichrome staining. RESULTS: The treatment was successfully performed in less than 30 min and resulted in formation of a rectangular lesion visualized on B-mode images during the sonication as an echogenic region, which sustained for about 10 min post-treatment. Histology revealed loss of cellular structure, necrotic debris and globules of degenerated collagen in the target volume surrounded by injured smooth muscle cells. CONCLUSION: The pilot experiment described here indicates that boiling histotripsy is feasible for non-invasive mechanical disintegration of human uterine leiomyoma ex vivo under B-mode guidance, encouraging further investigation and optimization of this potential clinical application of boiling histotripsy.


Asunto(s)
Ultrasonido Enfocado de Alta Intensidad de Ablación , Leiomioma , Neoplasias Uterinas , Humanos , Leiomioma/terapia , Leiomioma/diagnóstico por imagen , Leiomioma/cirugía , Femenino , Proyectos Piloto , Neoplasias Uterinas/terapia , Neoplasias Uterinas/diagnóstico por imagen , Ultrasonido Enfocado de Alta Intensidad de Ablación/métodos , Estudios de Factibilidad , Técnicas In Vitro , Resultado del Tratamiento
2.
AIP Conf Proc ; 16852015 Jun 29.
Artículo en Inglés | MEDLINE | ID: mdl-27147775

RESUMEN

Acoustic radiation force is a nonlinear acoustic effect caused by the transfer of wave momentum to absorbing or scattering objects. This phenomenon is exploited in modern ultrasound metrology for measurement of the acoustic power radiated by a source and is used for both therapeutic and diagnostic sources in medical applications. To calculate radiation force an acoustic hologram can be used in conjunction with analytical expressions based on the angular spectrum of the measured field. The results of an experimental investigation of radiation forces in two different cases are presented in this paper. In one case, the radiation force of an obliquely incident ultrasound beam on a large absorber (which completely absorbs the beam) is considered. The second case concerns measurement of the radiation force on a spherical target that is small compared to the beam diameter.

3.
J Acoust Soc Am ; 134(2): 1647-55, 2013 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-23927205

RESUMEN

Interstitial thermal therapy is a minimally invasive treatment modality that has been used clinically for ablating both primary and secondary brain tumors. Here a multi-element interstitial ultrasound applicator is described that allows for increased spatial control during thermal ablation of tumors as compared to existing clinical devices. The device consists of an array of 56 ultrasound elements operating at 6 MHz, oriented on the seven faces of a 3.2 mm flexible catheter. The device was first characterized using the acoustic holography method to examine the functioning of the array. Then experiments were performed to measure heating in tissue-mimicking gel phantoms and ex vivo tissue samples using magnetic resonance imaging-based thermometry. Experimental measurements were compared with results obtained using numerical simulations. Last, simulations were performed to study the feasibility of using the device for thermal ablation in the brain. Experimental results show that the device can be used to induce a temperature rise of greater than 20 °C in ex vivo tissue samples and numerical simulations further demonstrate that tumors with diameters of greater than 30-mm could potentially be treated.


Asunto(s)
Neoplasias Encefálicas/cirugía , Catéteres , Transductores , Terapia por Ultrasonido/instrumentación , Neoplasias Encefálicas/patología , Simulación por Computador , Diseño de Equipo , Estudios de Factibilidad , Holografía , Calor , Imagen por Resonancia Magnética , Modelos Biológicos , Análisis Numérico Asistido por Computador , Termografía/métodos , Carga Tumoral , Terapia por Ultrasonido/efectos adversos
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