Publications

Autonomous Robotic System for Breast Biopsy With Deformation Compensation  (2023)

Authors:
Ferrari, Sandro; Tagliabue, Eleonora; Maris, Bogdan Mihai; Fiorini, Paolo
Title:
Autonomous Robotic System for Breast Biopsy With Deformation Compensation
Year:
2023
Type of item:
Articolo in Rivista
Tipologia ANVUR:
Articolo su rivista
Language:
Inglese
Format:
Elettronico
Referee:
Name of journal:
IEEE ROBOTICS AND AUTOMATION LETTERS
ISSN of journal:
2377-3766
N° Volume:
8
Number or Folder:
3
Page numbers:
1215-1222
Keyword:
Autonomous robots, computer vision in medical robotics, force control, medical robotics, medical simulation
Short description of contents:
Image-guided biopsy is the most common technique for breast cancer diagnosis. Although magnetic resonance imaging (MRI) has the highest sensitivity in breast lesion detection, ultrasound (US) biopsy guidance is generally preferred due to its non-invasiveness and real-time image feedback during the insertion. In this work, we propose an autonomous robotic system for US-guided biopsy of breast lesions identified on pre-operative MRI. After initial MRI to breast registration, the US probe attached to the robotic manipulator compresses the breast tissues until a pre-determined force level is reached. This technique, known as preloading, will allow to minimize lesion displacement during the needle insertion. Our workflow integrates a deformation compensation strategy based on patient-specific biomechanical model to update the US probe orientation keeping the target lesion on the US image plane during compression. By relying on a deformation model, the proposed system does not require lesion visibility on US. Experimental evaluation is performed to assess the performance of the system on a realistic breast phantom with 15 internal lesions, considering different preloading forces. The deformation compensation strategy allows to improve localization accuracy, and as a consequence final probe positioning, for all considered lesions. Median lesion localization error is 3.3 mm, which is lower than the median lesion radius, when applying a preloading of 2 N, which guarantees both minimal needle insertion error and tissue stress.
Web page:
https://ieeexplore.ieee.org/abstract/document/10018406
Product ID:
131606
Handle IRIS:
11562/1084087
Last Modified:
March 9, 2024
Bibliographic citation:
Ferrari, Sandro; Tagliabue, Eleonora; Maris, Bogdan Mihai; Fiorini, Paolo, Autonomous Robotic System for Breast Biopsy With Deformation Compensation «IEEE ROBOTICS AND AUTOMATION LETTERS» , vol. 8 , n. 32023pp. 1215-1222

Consulta la scheda completa presente nel repository istituzionale della Ricerca di Ateneo IRIS

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