Endoluminal laser delivery mode and wavelength effects on varicose veins in an Ex vivo model
Identifieur interne : 000585 ( Main/Exploration ); précédent : 000584; suivant : 000586Endoluminal laser delivery mode and wavelength effects on varicose veins in an Ex vivo model
Auteurs : Ane B. M. N. Massaki [États-Unis] ; Monika G. Kiripolsky [États-Unis] ; Susan P. Detwiler [États-Unis] ; Mitchel P. Goldman [États-Unis]Source :
- Lasers in Surgery and Medicine [ 0196-8092 ] ; 2013-02.
English descriptors
- KwdEn :
- Ablation, Bers, Coagulation necrosis, Coagulum, Delivery mode, Delivery modes, Dermatol, Dermatol surg, Diode, Diode laser, Direct contact, Direct laser impact, Endovenous, Endovenous laser ablation, Endovenous laser treatment, Evla, Full thickness necrosis, Goldman, Greater saphenous vein, Histologic, Histological, Human vein, Laser, Laser light, Lasers surg, Muscle cell nuclei, Online version, Partial thickness, Perforation, Pulse duration, Saphenous, Smooth muscle, Surg, Thermal damage, Total wall perforation, Transmural tissue ablation, Tumescent anesthesia, Varicose, Varicose veins, Vasc, Vasc endovasc surg, Vasc surg, Vein segments, Vein wall, Vein wall perforations, Vessel wall.
- Teeft :
- Ablation, Bers, Coagulation necrosis, Coagulum, Delivery mode, Delivery modes, Dermatol, Dermatol surg, Diode, Diode laser, Direct contact, Direct laser impact, Endovenous, Endovenous laser ablation, Endovenous laser treatment, Evla, Full thickness necrosis, Goldman, Greater saphenous vein, Histologic, Histological, Human vein, Laser, Laser light, Lasers surg, Muscle cell nuclei, Online version, Partial thickness, Perforation, Pulse duration, Saphenous, Smooth muscle, Surg, Thermal damage, Total wall perforation, Transmural tissue ablation, Tumescent anesthesia, Varicose, Varicose veins, Vasc, Vasc endovasc surg, Vasc surg, Vein segments, Vein wall, Vein wall perforations, Vessel wall.
Abstract
Endovenous laser ablation (EVLA) has been shown to be effective for the elimination of saphenous veins and associated reflux. Mechanism is known to be heat related, but precise way in which heat causes vein ablation is not completely known. This study aimed to determine the effects of various endovenous laser wavelengths and delivery modes on ex vivo human vein both macroscopically and microscopically. We also evaluated whether protected‐tip fibers, consisting of prototype silica fibers with a metal tube over the distal end, reduced vein wall perforations compared with non‐protected‐tip fibers.
Url:
DOI: 10.1002/lsm.22069
Affiliations:
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Le document en format XML
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<profileDesc><textClass><keywords scheme="KwdEn" xml:lang="en"><term>Ablation</term>
<term>Bers</term>
<term>Coagulation necrosis</term>
<term>Coagulum</term>
<term>Delivery mode</term>
<term>Delivery modes</term>
<term>Dermatol</term>
<term>Dermatol surg</term>
<term>Diode</term>
<term>Diode laser</term>
<term>Direct contact</term>
<term>Direct laser impact</term>
<term>Endovenous</term>
<term>Endovenous laser ablation</term>
<term>Endovenous laser treatment</term>
<term>Evla</term>
<term>Full thickness necrosis</term>
<term>Goldman</term>
<term>Greater saphenous vein</term>
<term>Histologic</term>
<term>Histological</term>
<term>Human vein</term>
<term>Laser</term>
<term>Laser light</term>
<term>Lasers surg</term>
<term>Muscle cell nuclei</term>
<term>Online version</term>
<term>Partial thickness</term>
<term>Perforation</term>
<term>Pulse duration</term>
<term>Saphenous</term>
<term>Smooth muscle</term>
<term>Surg</term>
<term>Thermal damage</term>
<term>Total wall perforation</term>
<term>Transmural tissue ablation</term>
<term>Tumescent anesthesia</term>
<term>Varicose</term>
<term>Varicose veins</term>
<term>Vasc</term>
<term>Vasc endovasc surg</term>
<term>Vasc surg</term>
<term>Vein segments</term>
<term>Vein wall</term>
<term>Vein wall perforations</term>
<term>Vessel wall</term>
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<term>Coagulation necrosis</term>
<term>Coagulum</term>
<term>Delivery mode</term>
<term>Delivery modes</term>
<term>Dermatol</term>
<term>Dermatol surg</term>
<term>Diode</term>
<term>Diode laser</term>
<term>Direct contact</term>
<term>Direct laser impact</term>
<term>Endovenous</term>
<term>Endovenous laser ablation</term>
<term>Endovenous laser treatment</term>
<term>Evla</term>
<term>Full thickness necrosis</term>
<term>Goldman</term>
<term>Greater saphenous vein</term>
<term>Histologic</term>
<term>Histological</term>
<term>Human vein</term>
<term>Laser</term>
<term>Laser light</term>
<term>Lasers surg</term>
<term>Muscle cell nuclei</term>
<term>Online version</term>
<term>Partial thickness</term>
<term>Perforation</term>
<term>Pulse duration</term>
<term>Saphenous</term>
<term>Smooth muscle</term>
<term>Surg</term>
<term>Thermal damage</term>
<term>Total wall perforation</term>
<term>Transmural tissue ablation</term>
<term>Tumescent anesthesia</term>
<term>Varicose</term>
<term>Varicose veins</term>
<term>Vasc</term>
<term>Vasc endovasc surg</term>
<term>Vasc surg</term>
<term>Vein segments</term>
<term>Vein wall</term>
<term>Vein wall perforations</term>
<term>Vessel wall</term>
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<front><div type="abstract">Endovenous laser ablation (EVLA) has been shown to be effective for the elimination of saphenous veins and associated reflux. Mechanism is known to be heat related, but precise way in which heat causes vein ablation is not completely known. This study aimed to determine the effects of various endovenous laser wavelengths and delivery modes on ex vivo human vein both macroscopically and microscopically. We also evaluated whether protected‐tip fibers, consisting of prototype silica fibers with a metal tube over the distal end, reduced vein wall perforations compared with non‐protected‐tip fibers.</div>
</front>
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<affiliations><list><country><li>États-Unis</li>
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<region><li>Californie</li>
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<name sortKey="Detwiler, Susan P" sort="Detwiler, Susan P" uniqKey="Detwiler S" first="Susan P." last="Detwiler">Susan P. Detwiler</name>
<name sortKey="Goldman, Mitchel P" sort="Goldman, Mitchel P" uniqKey="Goldman M" first="Mitchel P." last="Goldman">Mitchel P. Goldman</name>
<name sortKey="Kiripolsky, Monika G" sort="Kiripolsky, Monika G" uniqKey="Kiripolsky M" first="Monika G." last="Kiripolsky">Monika G. Kiripolsky</name>
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