ICRA 2019poster10 citations

Retrieval of magnetic medical microrobots from the bloodstream

V. Iacovacci, L. Ricotti, G. Signore, F. Vistoli, E. Sinibaldi, A. Menciassi

Abstract

Untethered magnetic microrobots hold the potential to penetrate hard-to-reach areas of the human body and to perform therapy in a controlled way. In the past decade, impressive advancements have been made in this field but the clinical adoption of magnetoresponsive microrobots is still hampered by safety issues. A tool appointed for magnetic microrobots retrieval within body fluids could enable a real paradigm change, fostering their clinical translation.By starting from the general problem to retrieve magnetic microrobots injected into the bloodstream, the authors introduce a magnetic capture model that allows to design retrieval tools for magnetic cores of different diameters (down to 10 nm) and in different environmental conditions (fluid speed up to 7 cms-1). The model robustness is demonstrated by the design and testing of a retrieval catheter. In its optimal configuration, the catheter includes 27 magnets and fits a 12 F catheter. The model provides a good prediction of capture efficiency for 250 nm magnetic particles (experimental data: 77.6%, model prediction: 65%) and a very good prediction for 500 nm particles (experimental data: 93.6%, model prediction: 94%). The results support the proposed model-based design approach, which can be extended to retrieve other magnetoresponsive agents from body compartments.

BibTeX
@inproceedings{icra2019_retrievalofmagne,
  title = {Retrieval of magnetic medical microrobots from the bloodstream},
  author = {V. Iacovacci and L. Ricotti and G. Signore and F. Vistoli and E. Sinibaldi and A. Menciassi},
  booktitle = {ICRA 2019},
  year = {2019}
}