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2018 | OriginalPaper | Buchkapitel

A New Bone Fixation Device for Human Joint Test Rig Machine

verfasst von : Luca Luzi, Nicola Sancisi, Michele Conconi, Vincenzo Parenti Castelli

Erschienen in: Advances in Service and Industrial Robotics

Verlag: Springer International Publishing

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Abstract

In vitro experimental tests are of great importance in human joint biomechanics. These tests allow the study of the kinetostatic and dynamic behaviour of human joints: a limb specimen is connected to a rig, controlled loads are applied, and the joint displacements are measured. Fixation of the bone to the rig is a typical problem that raises in these applications. A new fixation device is presented in this paper that features several interesting and innovative characteristics: it consists of a passive parallel mechanism that allows adjustment of the pose of the bone with respect to the rig with six degrees of freedom; if needed, the bone can be removed from the rig and repositioned exactly at the same pose during the experimental tests; all six degrees of freedom of the fixation device can be locked by acting only on two screws, thus simplifying the fixation operation; the parallel structure of the mechanism guarantees a high fixation stiffness. The complete design is presented and discussed, together with the results from the workspace and stiffness analyses of the mechanism, that are particularly important for the considered applications.

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Literatur
1.
Zurück zum Zitat Zavatsky A (1997) A kinematic-freedom analysis of a flexed-knee-stance testing rig. J Biomech 30(3):277–280CrossRef Zavatsky A (1997) A kinematic-freedom analysis of a flexed-knee-stance testing rig. J Biomech 30(3):277–280CrossRef
2.
Zurück zum Zitat Varadarajan KM, Harry RE, Johnson T, Li G (2009) Can in vitro system capture the characteristic differences between the flexion-extension kinematics of the healthy and the tka knee. Med Eng Phys 31(11):899–906CrossRef Varadarajan KM, Harry RE, Johnson T, Li G (2009) Can in vitro system capture the characteristic differences between the flexion-extension kinematics of the healthy and the tka knee. Med Eng Phys 31(11):899–906CrossRef
3.
Zurück zum Zitat Forlani M, Sancisi N, Conconi M, Parenti-Castelli V (2015) A new test rig for static and dynamic evaluation of knee motion based on a cable-driven parallel manipulator loading system. Meccanica 51:1–11 Forlani M, Sancisi N, Conconi M, Parenti-Castelli V (2015) A new test rig for static and dynamic evaluation of knee motion based on a cable-driven parallel manipulator loading system. Meccanica 51:1–11
4.
Zurück zum Zitat Luzi L, Sancisi N, Conconi M, Parenti Castelli V (2016) A new test rig for human joint and prosthesis characterization. J Med Devices 10(2) Luzi L, Sancisi N, Conconi M, Parenti Castelli V (2016) A new test rig for human joint and prosthesis characterization. J Med Devices 10(2)
5.
Zurück zum Zitat Weinhandl JT, Hoch MC, Bawab SY, Ringleb SI (2016) Comparison of ACL strain estimated via a data-driven model with in vitro measurements. Comput Methods Biomech Biomed Eng 19(14):1550CrossRef Weinhandl JT, Hoch MC, Bawab SY, Ringleb SI (2016) Comparison of ACL strain estimated via a data-driven model with in vitro measurements. Comput Methods Biomech Biomed Eng 19(14):1550CrossRef
6.
Zurück zum Zitat Muller O, Lo J, Wunschel M, Wulker N (2009) Simulation of force loaded knee movement in a newly developed in vitro knee simulator. Biomed Tech (Biomed Eng) 54(3):142CrossRef Muller O, Lo J, Wunschel M, Wulker N (2009) Simulation of force loaded knee movement in a newly developed in vitro knee simulator. Biomed Tech (Biomed Eng) 54(3):142CrossRef
7.
Zurück zum Zitat Bates BA, Nesbitt RJ, Shearn JT, Myer GD, Hewett TE (2015) A novel methodology for the simulation of athletic tasks on cadaveric knee joints with respect to in vivo kinematics. Ann Biomed Eng 43(10):2456CrossRef Bates BA, Nesbitt RJ, Shearn JT, Myer GD, Hewett TE (2015) A novel methodology for the simulation of athletic tasks on cadaveric knee joints with respect to in vivo kinematics. Ann Biomed Eng 43(10):2456CrossRef
8.
Zurück zum Zitat Grood ES, Stowers SF, Noyes FR (1988) Limits of movement in the human knee. Effect of sectioning the posterior cruciate ligament and posterolateral structures. J Bone Jt Surg Am 70(1):88CrossRef Grood ES, Stowers SF, Noyes FR (1988) Limits of movement in the human knee. Effect of sectioning the posterior cruciate ligament and posterolateral structures. J Bone Jt Surg Am 70(1):88CrossRef
Metadaten
Titel
A New Bone Fixation Device for Human Joint Test Rig Machine
verfasst von
Luca Luzi
Nicola Sancisi
Michele Conconi
Vincenzo Parenti Castelli
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-61276-8_108

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