In-vivo urodynamic pressure measurement with fiber-optic EFPI pressure probes

Urodynamic analysis carried out with biocompatible catheterized fiber-optic probes, for dual measurement of pressure in bladder and in rectum, is presented. Medical tests have been performed in-vivo on seven patients; main highlights are reported.

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Published in2014 Conference on Lasers and Electro-Optics (CLEO) - Laser Science to Photonic Applications pp. 1 - 2
Main Authors Poeggel, S., Tosi, D., Fusco, F., Mirone, V., Sannino, S., Lupoli, L., Ippolito, J., Leen, G., Lewis, E.
Format Conference Proceeding
LanguageEnglish
Published The Optical Society 01.06.2014
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Abstract Urodynamic analysis carried out with biocompatible catheterized fiber-optic probes, for dual measurement of pressure in bladder and in rectum, is presented. Medical tests have been performed in-vivo on seven patients; main highlights are reported.
AbstractList Urodynamic analysis carried out with biocompatible catheterized fiber-optic probes, for dual measurement of pressure in bladder and in rectum, is presented. Medical tests have been performed in-vivo on seven patients; main highlights are reported.
Author Tosi, D.
Fusco, F.
Ippolito, J.
Poeggel, S.
Lewis, E.
Mirone, V.
Leen, G.
Lupoli, L.
Sannino, S.
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  email: daniele.tosi@ul.ie
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  surname: Fusco
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  organization: Urologic Clinic, Federico II Univ. of Naples, Naples, Italy
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  surname: Mirone
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  organization: Urologic Clinic, Federico II Univ. of Naples, Naples, Italy
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  fullname: Leen, G.
  organization: Opt. Fibre Sensors Res. Centre, Univ. of Limerick, Limerick, Ireland
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  givenname: E.
  surname: Lewis
  fullname: Lewis, E.
  organization: Opt. Fibre Sensors Res. Centre, Univ. of Limerick, Limerick, Ireland
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Snippet Urodynamic analysis carried out with biocompatible catheterized fiber-optic probes, for dual measurement of pressure in bladder and in rectum, is presented....
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StartPage 1
SubjectTerms Bladder
Catheters
Optical fiber sensors
Optical fibers
Pressure measurement
Probes
Title In-vivo urodynamic pressure measurement with fiber-optic EFPI pressure probes
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