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  4. Intra-articular pressure measurement in the radioulnocarpal joint using a novel sensor : in vitro and in vivo results
 
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Intra-articular pressure measurement in the radioulnocarpal joint using a novel sensor : in vitro and in vivo results

Publikationstyp
Journal Article
Date Issued
2007-01
Sprache
English
Author(s)
Rikli, Daniel A.
Honigmann, Philipp
Babst, Reto
Cristalli, Alessandra
Morlock, Michael  
Biomechanik M-3  
Mittlmeier, Thomas  
TORE-URI
https://hdl.handle.net/11420/46625
Journal
The journal of hand surgery. American volume  
Volume
32
Issue
1
Start Page
67
End Page
75
Citation
Journal of Hand Surgery 32 (1): 67-75 (2007)
Publisher DOI
10.1016/j.jhsa.2006.10.007
Scopus ID
2-s2.0-33846041294
Publisher
Elsevier
Purpose: To determine the amount and distribution of forces transmitted across the human radioulnocarpal joint under physiologic conditions in vivo. We performed an in vitro validation of a specifically developed capacitive pressure-sensor device and an in vivo measurement of force transmission and pressure distribution at the radioulnocarpal joint in a healthy volunteer. Methods: A new capacitive pressure-sensor device was adapted for intra-articular pressure measurement in the human radioulnocarpal joint. The technical characteristics of the device were determined and the sensor was validated in fresh-frozen cadaver tests. Force transmission across the radioulnocarpal joint then was measured in healthy volunteers under local anesthesia. Results: The sensor delivered reproducible measurements of forces across the radioulnocarpal joint and their distribution in the cadaver experiment. In vivo, 2 centers of force transmission were identified. None of these centers correlated with previous findings in the literature. More force is transmitted across the ulnar side of the radioulnocarpal joint than previously thought. The results are consistent with clinical findings. Conclusions: The novel sensor device is suitable for intra-articular pressure measurement in the human radioulnocarpal joint in vitro and in vivo. © 2007 American Society for Surgery of the Hand.
Subjects
Biomechanics
distal radius fracture
force transmission
wrist
DDC Class
610: Medicine, Health
620: Engineering
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