Using an impact hammer to perform biomechanical measurements during osteotomies: Study of an animal model

Author:

Lamassoure Léo1,Giunta Justine2,Rosi Giuseppe3,Poudrel Anne-Sophie1,Bosc Romain24,Haïat Guillaume1ORCID

Affiliation:

1. CNRS, Laboratoire Modélisation et Simulation Multi Echelle, MSME UMR 8208 CNRS, Créteil Cedex, France

2. Service de Chirurgie Plastique, reconstructrice, esthétique et Maxillo-faciale du Centre Hospitalier Universitaire Henri Mondor, Créteil, France

3. Laboratoire Modélisation et Simulation Multi Echelle, MSME UMR 8208 CNRS, Université Paris-Est, Créteil Cedex, France

4. Équipe 10, Groupe 5, IMRB U955, INSERM/UPEC, Créteil, France

Abstract

Osteotomies are common surgical procedures used for instance in rhinoplasty and usually performed using an osteotome impacted by a mallet. Visual control being difficult, osteotomies are often based on the surgeon proprioception to determine the number and energy of each impact. The aim of this study is to determine whether a hammer instrumented with a piezoelectric force sensor can be used to (i) follow the displacement of the osteotome and (ii) determine when the tip of the osteotome arrives in frontal bone, which corresponds to the end of the osteotomy pathway. Seven New Zealand White rabbit heads were collected, and two osteotomies were performed on their left and right nasal bones using the instrumented hammer to record the variation of the force as a function of time during each impact. The second peak time τ was derived from each signal while the displacement of the osteotome tip D was determined using video motion tracking. The results showed a significant correlation between τ and D ( ρ2 = 0.74), allowing to estimate the displacement of the osteotome through the measurement of τ. The values of τ measured in the frontal bone were significantly lower than in the nasal bone ( p<10−10), which allows to determine the transition between the nasal and frontal bones when τ becomes lower than 0.78 its initial averaged value. Although results should be validated clinically, this technology could be used by surgeons in the future as a decision support system to help assessing the osteotome environment.

Funder

H2020 European Research Council

Prématuration programme

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Medicine

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