Mechanical characteristics of lyophilized human saphenous vein valves
Purpose: We investigated the mechanical characteristics of lyophilized human saphenous vein valves to determine their suitability for use as allogeneic transplants to treat chronic venous insufficiency. Methods: Fresh cadaveric veins were lyophilized in vacuum bottles within 24 hours of harvest and...
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Published in | Journal of vascular surgery Vol. 26; no. 5; pp. 823 - 828 |
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Main Authors | , , , , , , |
Format | Journal Article Conference Proceeding |
Language | English |
Published |
New York, NY
Mosby, Inc
01.11.1997
Elsevier |
Subjects | |
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Abstract | Purpose: We investigated the mechanical characteristics of lyophilized human saphenous vein valves to determine their suitability for use as allogeneic transplants to treat chronic venous insufficiency.
Methods: Fresh cadaveric veins were lyophilized in vacuum bottles within 24 hours of harvest and were stored at room temperature. The veins were reconstituted in saline solution and then were placed in an in vitro flow circuit for evaluation. At varied flow rates, pressures proximal and distal to valves during prograde and retrograde flow were measured. Valve closure times were determined with Doppler examination and spectral analysis. The valves were also stressed to 350 mm Hg on a separate apparatus.
Results: All pressures proximal and distal to the valves remained less than 10 mm Hg during prograde flow. A pressure gradient developed immediately on the reversal of flow. Pressure as high as 200 mm Hg applied against the closed valves was not transmitted beyond the valve. Valve closure times had a mean of 0.31 ± 0.03 seconds and 0.21 ± 0.01 seconds for the Doppler examination and spectral analysis, respectively. All valves withstood stress pressures to 350 mm Hg.
Conclusions: The in vitro mechanical characteristics of the valves of lyophilized veins are similar to known values for normal in vivo valves. (J Vasc Surg 1997;26:823-8.) |
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AbstractList | PURPOSEWe investigated the mechanical characteristics of lyophilized human saphenous vein valves to determine their suitability for use as allogeneic transplants to treat chronic venous insufficiency.METHODSFresh cadaveric veins were lyophilized in vacuum bottles within 24 hours of harvest and were stored at room temperature. The veins were reconstituted in saline solution and then were placed in an in vitro flow circuit for evaluation. At varied flow rates, pressures proximal and distal to valves during prograde and retrograde flow were measured. Valve closure times were determined with Doppler examination and spectral analysis. The valves were also stressed to 350 mm Hg on a separate apparatus.RESULTSAll pressures proximal and distal to the valves remained less than 10 mm Hg during prograde flow. A pressure gradient developed immediately on the reversal of flow. Pressure as high as 200 mm Hg applied against the closed valves was not transmitted beyond the valve. Valve closure times had a mean of 0.31 +/- 0.03 seconds and 0.21 +/- 0.01 seconds for the Doppler examination and spectral analysis, respectively. All valves withstood stress pressures to 350 mm Hg.CONCLUSIONSThe in vitro mechanical characteristics of the valves of lyophilized veins are similar to known values for normal in vivo valves. We investigated the mechanical characteristics of lyophilized human saphenous vein valves to determine their suitability for use as allogeneic transplants to treat chronic venous insufficiency. Fresh cadaveric veins were lyophilized in vacuum bottles within 24 hours of harvest and were stored at room temperature. The veins were reconstituted in saline solution and then were placed in an in vitro flow circuit for evaluation. At varied flow rates, pressures proximal and distal to valves during prograde and retrograde flow were measured. Valve closure times were determined with Doppler examination and spectral analysis. The valves were also stressed to 350 mm Hg on a separate apparatus. All pressures proximal and distal to the valves remained less than 10 mm Hg during prograde flow. A pressure gradient developed immediately on the reversal of flow. Pressure as high as 200 mm Hg applied against the closed valves was not transmitted beyond the valve. Valve closure times had a mean of 0.31 +/- 0.03 seconds and 0.21 +/- 0.01 seconds for the Doppler examination and spectral analysis, respectively. All valves withstood stress pressures to 350 mm Hg. The in vitro mechanical characteristics of the valves of lyophilized veins are similar to known values for normal in vivo valves. Purpose: We investigated the mechanical characteristics of lyophilized human saphenous vein valves to determine their suitability for use as allogeneic transplants to treat chronic venous insufficiency. Methods: Fresh cadaveric veins were lyophilized in vacuum bottles within 24 hours of harvest and were stored at room temperature. The veins were reconstituted in saline solution and then were placed in an in vitro flow circuit for evaluation. At varied flow rates, pressures proximal and distal to valves during prograde and retrograde flow were measured. Valve closure times were determined with Doppler examination and spectral analysis. The valves were also stressed to 350 mm Hg on a separate apparatus. Results: All pressures proximal and distal to the valves remained less than 10 mm Hg during prograde flow. A pressure gradient developed immediately on the reversal of flow. Pressure as high as 200 mm Hg applied against the closed valves was not transmitted beyond the valve. Valve closure times had a mean of 0.31 ± 0.03 seconds and 0.21 ± 0.01 seconds for the Doppler examination and spectral analysis, respectively. All valves withstood stress pressures to 350 mm Hg. Conclusions: The in vitro mechanical characteristics of the valves of lyophilized veins are similar to known values for normal in vivo valves. (J Vasc Surg 1997;26:823-8.) |
Author | Cassada, David C. Goldman, Mitchell H. Reeves, T.Roland Sackman, Jill E. Freeman, Michael B. Stevens, Scott L. Cezeaux, Judy L. |
Author_xml | – sequence: 1 givenname: T.Roland surname: Reeves fullname: Reeves, T.Roland – sequence: 2 givenname: Judy L. surname: Cezeaux fullname: Cezeaux, Judy L. – sequence: 3 givenname: Jill E. surname: Sackman fullname: Sackman, Jill E. – sequence: 4 givenname: David C. surname: Cassada fullname: Cassada, David C. – sequence: 5 givenname: Michael B. surname: Freeman fullname: Freeman, Michael B. – sequence: 6 givenname: Scott L. surname: Stevens fullname: Stevens, Scott L. – sequence: 7 givenname: Mitchell H. surname: Goldman fullname: Goldman, Mitchell H. |
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Keywords | Sonography Doppler ultrasound study Human Freeze drying Autopsy Saphenous vein Mechanical characteristic Vein valve Exploration Circulatory system |
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article-title: Venous insufficiency of the lower limb and stasis ulceration: changing concepts and management publication-title: Ann Surg doi: 10.1097/00000658-198306000-00007 contributor: fullname: Raju |
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Snippet | Purpose: We investigated the mechanical characteristics of lyophilized human saphenous vein valves to determine their suitability for use as allogeneic... We investigated the mechanical characteristics of lyophilized human saphenous vein valves to determine their suitability for use as allogeneic transplants to... PURPOSEWe investigated the mechanical characteristics of lyophilized human saphenous vein valves to determine their suitability for use as allogeneic... |
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SubjectTerms | Biological and medical sciences Blood vessels and receptors Freeze Drying Fundamental and applied biological sciences. Psychology Hemorheology Humans In Vitro Techniques Pressure Saphenous Vein - diagnostic imaging Saphenous Vein - physiology Saphenous Vein - transplantation Ultrasonography, Doppler Vertebrates: cardiovascular system |
Title | Mechanical characteristics of lyophilized human saphenous vein valves |
URI | https://dx.doi.org/10.1016/S0741-5214(97)70096-X https://www.ncbi.nlm.nih.gov/pubmed/9372821 https://search.proquest.com/docview/79419395 |
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