Development of Convolutional Neural Network to Segment Ultrasound Images of Histotripsy Ablation

OBJECTIVE: Histotripsy is a focused ultrasound therapy that ablates tissue via the action of bubble clouds. It is under investigation to treat a number of ailments, including renal tumors. Ultrasound imaging is used to monitor histotripsy, though there remains a lack of definitive imaging metrics to confirm successful treatment outcomes. In this study, a convolutional neural network (CNN) was developed to segment ablation on ultrasound images.

METHODS: A transfer learning approach was used to replace classification layers of the residual network ResNet-18. Inputs to the classification layers were based on imaging assessment of red blood cell phantoms that were ablated by histotripsy ablation, including ultrasound images and digital photographs that served as the ground truth. The efficacy of the CNN was compared to subtraction imaging, and manual segmentation of images by two board-certified radiologists.

RESULTS: The CNN had a similar performance to manual segmentation, though was improved relative to segmentation with subtraction imaging. Predictions of the network improved over the course of treatment, with the Dice similarity coefficient less than 20% for fewer than 500 applied pulses, but 85% for more than 750 applied pulses. The network was also applied to ultrasound images of ex vivo kidney exposed to histotripsy, which indicated a morphological shift in the treatment profile relative to the phantoms. These findings were consistent with histology that confirmed ablation of the targeted tissue.

CONCLUSION: Overall, the CNN showed promise as a rapid means to assess outcomes of histotripsy and automate treatment.

SIGNIFICANCE: Data collected in this study indicate integration of CNN image segmentation to gauge outcomes for histotripsy ablation holds promise for automating treatment procedures.

Medienart:

E-Artikel

Erscheinungsjahr:

2024

Erschienen:

2024

Enthalten in:

Zur Gesamtaufnahme - volume:PP

Enthalten in:

IEEE transactions on bio-medical engineering - PP(2024) vom: 10. Jan.

Sprache:

Englisch

Beteiligte Personen:

Miao, Katherine [VerfasserIn]
Basterrechea, Katia Flores [VerfasserIn]
Hernandez, Sonia L [VerfasserIn]
Ahmed, Osman S [VerfasserIn]
Patel, Mikin V [VerfasserIn]
Bader, Kenneth B [VerfasserIn]

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Journal Article

Anmerkungen:

Date Revised 10.01.2024

published: Print-Electronic

Citation Status Publisher

doi:

10.1109/TBME.2024.3352538

funding:

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

NLM366888420