» Articles » PMID: 31778909

A Cadaveric Validation of a Method Based on Impact Analysis to Monitor the Femoral Stem Insertion

Overview
Publisher Elsevier
Date 2019 Nov 29
PMID 31778909
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

The success of cementless hip arthroplasty depends on the primary stability of the femoral stem (FS). It remains difficult to assess the optimal impaction energy to guarantee the FS stability while avoiding bone fracture. The aim of this study is to compare the results of a method based on the use of an instrumented hammer to determine the insertion endpoint of cementless FS in a cadaveric model with two other methods using i) the surgeon proprioception and ii) video motion tracking. Different FS were impacted in nine human cadaveric femurs. For each configuration, the number of impacts realized when the surgeon felt that the FS was correctly inserted was noted N. For each impact, the insertion depth E was measured and an indicator D was determined based on the time-variation of the force. The impact number N (respectively N), corresponding to the end of the migration phase, was estimated analyzing the evolution of E (respectively D). The respective difference between N, N and N was similar and lower than 3 for more than 85% of the configurations. The results allow a validation of the use of an impact hammer to assess the moment when the surgeon should stop the impaction, paving the way towards the development of a decision support system to assist the surgeon.

Citing Articles

An Instrumented Hammer to Detect the Rupture of the Pterygoid Plates.

Bas Dit Nugues M, Lamassoure L, Rosi G, Flouzat-Lachaniette C, Khonsari R, Haiat G Ann Biomed Eng. 2024; 53(1):59-70.

PMID: 39174762 PMC: 11782435. DOI: 10.1007/s10439-024-03596-9.


Small design modifications can improve the primary stability of a fully coated tapered wedge hip stem.

Glismann K, Konow T, Lampe F, Ondruschka B, Huber G, Morlock M PLoS One. 2024; 19(4):e0300956.

PMID: 38630711 PMC: 11023602. DOI: 10.1371/journal.pone.0300956.


Using an Instrumented Hammer to Predict the Rupture of Bone Samples Subject to an Osteotomy.

Bas Dit Nugues M, Rosi G, Heriveaux Y, Haiat G Sensors (Basel). 2023; 23(4).

PMID: 36850902 PMC: 9965419. DOI: 10.3390/s23042304.


Modeling the debonding process of osseointegrated implants due to coupled adhesion and friction.

Immel K, Nguyen V, Haiat G, Sauer R Biomech Model Mechanobiol. 2022; 22(1):133-158.

PMID: 36284076 PMC: 9957925. DOI: 10.1007/s10237-022-01637-7.


A parametric numerical analysis of femoral stem impaction.

Bishop N, Wright P, Preutenborbeck M PLoS One. 2022; 17(5):e0268561.

PMID: 35594265 PMC: 9122192. DOI: 10.1371/journal.pone.0268561.