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O A Lindahl

Showing results (1-10 of 19) with videos related to

Pageof 2
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Physiological Measurement|February 1, 1995
The evaluation of a biexponential model for description of intercompartmental fluid shifts in compressed oedematous tissueO A Lindahl
Medical & Biological Engineering & Computing|January 1, 1995
Impression technique for the assessment of oedema: comparison with a new tactile sensor that measures physical properties of tissueO A Lindahl, S Omata
Journal of Medical Engineering & Technology|July 1, 1993
An electromechanical breathing device for minimal particle loss while inhaling aerosolsO A Lindahl, B Rudell, T Bäcklund
Medical & Biological Engineering & Computing|March 21, 2000
A catheter tactile sensor for measuring hardness of soft tissue: measurement in a silicone model and in an in vitro human prostate modelA Eklund, A Bergh, O A Lindahl
Journal of Medical Engineering & Technology|October 24, 2009
Technologies for localization and diagnosis of prostate cancerS Candefjord, K Ramser, O A Lindahl
Physiological Measurement|September 13, 2000
A resonator sensor for measurement of intraocular pressure--evaluation in an in vitro pig-eye modelA Eklund, T Bäcklund, O A Lindahl
Physiological Measurement|August 1, 1995
Monitoring of renal pelvic pressure in patients with hydronephrosisO A Lindahl, T Bäcklund, J G Sjödin
Physiological Measurement|June 10, 2000
Non-invasive assessment of fluid volume status in the interstitium after haemodialysisH J Zdolsek, O A Lindahl, F Sjöberg
Journal of Medical Engineering & Technology|July 29, 1998
A tactile sensor for detection of physical properties of human skin in vivoO A Lindahl, S Omata, K A Angquist
Journal of Medical Engineering & Technology|May 1, 1994
Grip strength of the human hand--measurements on normal subjects with a new hand strength analysis system (Hastras)O A Lindahl, A Nyström, P Bjerle, et al.
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
Physiological Measurement|February 1, 1995
The evaluation of a biexponential model for description of intercompartmental fluid shifts in compressed oedematous tissueO A Lindahl
Medical & Biological Engineering & Computing|January 1, 1995
Impression technique for the assessment of oedema: comparison with a new tactile sensor that measures physical properties of tissueO A Lindahl, S Omata
Journal of Medical Engineering & Technology|July 1, 1993
An electromechanical breathing device for minimal particle loss while inhaling aerosolsO A Lindahl, B Rudell, T Bäcklund
Medical & Biological Engineering & Computing|March 21, 2000
A catheter tactile sensor for measuring hardness of soft tissue: measurement in a silicone model and in an in vitro human prostate modelA Eklund, A Bergh, O A Lindahl
Journal of Medical Engineering & Technology|October 24, 2009
Technologies for localization and diagnosis of prostate cancerS Candefjord, K Ramser, O A Lindahl
Physiological Measurement|September 13, 2000
A resonator sensor for measurement of intraocular pressure--evaluation in an in vitro pig-eye modelA Eklund, T Bäcklund, O A Lindahl
Physiological Measurement|August 1, 1995
Monitoring of renal pelvic pressure in patients with hydronephrosisO A Lindahl, T Bäcklund, J G Sjödin
Physiological Measurement|June 10, 2000
Non-invasive assessment of fluid volume status in the interstitium after haemodialysisH J Zdolsek, O A Lindahl, F Sjöberg
Journal of Medical Engineering & Technology|July 29, 1998
A tactile sensor for detection of physical properties of human skin in vivoO A Lindahl, S Omata, K A Angquist
Journal of Medical Engineering & Technology|May 1, 1994
Grip strength of the human hand--measurements on normal subjects with a new hand strength analysis system (Hastras)O A Lindahl, A Nyström, P Bjerle, et al.
Pageof 2