Indocyanine green velocity: lymph transportation capacity deterioration with progression of lymphedema.
Identifieur interne : 003555 ( Main/Exploration ); précédent : 003554; suivant : 003556Indocyanine green velocity: lymph transportation capacity deterioration with progression of lymphedema.
Auteurs : Takumi Yamamoto (chirurgien) [Japon] ; Mitsunaga Narushima ; Hidehiko Yoshimatsu ; Nana Yamamoto ; Aiko Oka ; Yukio Seki ; Takeshi Todokoro ; Takuya Iida ; Isao KoshimaSource :
- Annals of plastic surgery [ 1536-3708 ] ; 2013.
Descripteurs français
- KwdFr :
- Colorants fluorescents (administration et posologie), Colorants fluorescents (pharmacocinétique), Humains, Injections sous-cutanées, Jambe, Lymphoedème (imagerie diagnostique), Lymphoedème (métabolisme), Lymphoedème (étiologie), Lymphographie (), Noeuds lymphatiques (métabolisme), Tumeurs du bassin (), Tumeurs du bassin (imagerie diagnostique), Vaisseaux lymphatiques (imagerie diagnostique), Vert indocyanine (administration et posologie), Vert indocyanine (pharmacocinétique), Évaluation des risques, Évolution de la maladie.
- MESH :
- administration et posologie : Colorants fluorescents, Vert indocyanine.
- imagerie diagnostique : Lymphoedème, Tumeurs du bassin, Vaisseaux lymphatiques.
- métabolisme : Lymphoedème, Noeuds lymphatiques.
- pharmacocinétique : Colorants fluorescents, Vert indocyanine.
- étiologie : Lymphoedème.
- Humains, Injections sous-cutanées, Jambe, Lymphographie, Tumeurs du bassin, Évaluation des risques, Évolution de la maladie.
English descriptors
- KwdEn :
- Disease Progression, Fluorescent Dyes (administration & dosage), Fluorescent Dyes (pharmacokinetics), Humans, Indocyanine Green (administration & dosage), Indocyanine Green (pharmacokinetics), Injections, Subcutaneous, Leg, Lymph Nodes (metabolism), Lymphatic Vessels (diagnostic imaging), Lymphedema (diagnostic imaging), Lymphedema (etiology), Lymphedema (metabolism), Lymphography (methods), Pelvic Neoplasms (complications), Pelvic Neoplasms (diagnostic imaging), Risk Assessment.
- MESH :
- chemical , administration & dosage : Fluorescent Dyes, Indocyanine Green.
- chemical , pharmacokinetics : Fluorescent Dyes, Indocyanine Green.
- complications : Pelvic Neoplasms.
- diagnostic imaging : Lymphatic Vessels, Lymphedema, Pelvic Neoplasms.
- etiology : Lymphedema.
- metabolism : Lymph Nodes, Lymphedema.
- methods : Lymphography.
- Disease Progression, Humans, Injections, Subcutaneous, Leg, Risk Assessment.
Abstract
Lymph transportation capacity is a critical function maintaining fluid circulation. After pelvic cancer treatments, lymph obstruction at the pelvic region leads to abnormal lymph circulation, resulting in lymph pump dysfunction. Besides lymph circulation, lymph pump function is important for lymphedema evaluation. We assessed and analyzed lymph transportation capacity of secondary lower extremity lymphedema patients using indocyanine green (ICG) lymphography according to corresponding severity stage. Indocyanine green velocity and transit time could evaluate lymph pump function; ICG velocity decreases and transit time increases as the lymphedema severity stage progresses. Measurement of ICG velocity required 5 minutes after the dye injection, whereas that of transit time took more than 1 hour in severe cases. Indocyanine green velocity can be easily obtained and is recommended for evaluation of lymph pump function compared with transit time. Dynamic ICG lymphography, which evaluates both lymph pump function and circulation, plays an important role in comprehensive assessment of lymphedema pathophysiology.
DOI: 10.1097/SAP.0b013e318255168a
PubMed: 24126343
Affiliations:
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Le document en format XML
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<term>Fluorescent Dyes (pharmacokinetics)</term>
<term>Humans</term>
<term>Indocyanine Green (administration & dosage)</term>
<term>Indocyanine Green (pharmacokinetics)</term>
<term>Injections, Subcutaneous</term>
<term>Leg</term>
<term>Lymph Nodes (metabolism)</term>
<term>Lymphatic Vessels (diagnostic imaging)</term>
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<term>Lymphedema (etiology)</term>
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<term>Pelvic Neoplasms (diagnostic imaging)</term>
<term>Risk Assessment</term>
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<term>Colorants fluorescents (pharmacocinétique)</term>
<term>Humains</term>
<term>Injections sous-cutanées</term>
<term>Jambe</term>
<term>Lymphoedème (imagerie diagnostique)</term>
<term>Lymphoedème (métabolisme)</term>
<term>Lymphoedème (étiologie)</term>
<term>Lymphographie ()</term>
<term>Noeuds lymphatiques (métabolisme)</term>
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<term>Tumeurs du bassin (imagerie diagnostique)</term>
<term>Vaisseaux lymphatiques (imagerie diagnostique)</term>
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<term>Vert indocyanine (pharmacocinétique)</term>
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<term>Évolution de la maladie</term>
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<term>Lymphedema</term>
<term>Pelvic Neoplasms</term>
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<term>Vaisseaux lymphatiques</term>
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<front><div type="abstract" xml:lang="en">Lymph transportation capacity is a critical function maintaining fluid circulation. After pelvic cancer treatments, lymph obstruction at the pelvic region leads to abnormal lymph circulation, resulting in lymph pump dysfunction. Besides lymph circulation, lymph pump function is important for lymphedema evaluation. We assessed and analyzed lymph transportation capacity of secondary lower extremity lymphedema patients using indocyanine green (ICG) lymphography according to corresponding severity stage. Indocyanine green velocity and transit time could evaluate lymph pump function; ICG velocity decreases and transit time increases as the lymphedema severity stage progresses. Measurement of ICG velocity required 5 minutes after the dye injection, whereas that of transit time took more than 1 hour in severe cases. Indocyanine green velocity can be easily obtained and is recommended for evaluation of lymph pump function compared with transit time. Dynamic ICG lymphography, which evaluates both lymph pump function and circulation, plays an important role in comprehensive assessment of lymphedema pathophysiology.</div>
</front>
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<name sortKey="Oka, Aiko" sort="Oka, Aiko" uniqKey="Oka A" first="Aiko" last="Oka">Aiko Oka</name>
<name sortKey="Seki, Yukio" sort="Seki, Yukio" uniqKey="Seki Y" first="Yukio" last="Seki">Yukio Seki</name>
<name sortKey="Todokoro, Takeshi" sort="Todokoro, Takeshi" uniqKey="Todokoro T" first="Takeshi" last="Todokoro">Takeshi Todokoro</name>
<name sortKey="Yamamoto, Nana" sort="Yamamoto, Nana" uniqKey="Yamamoto N" first="Nana" last="Yamamoto">Nana Yamamoto</name>
<name sortKey="Yoshimatsu, Hidehiko" sort="Yoshimatsu, Hidehiko" uniqKey="Yoshimatsu H" first="Hidehiko" last="Yoshimatsu">Hidehiko Yoshimatsu</name>
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<country name="Japon"><region name="Région de Kantō"><name sortKey="Yamamoto, Takumi" sort="Yamamoto, Takumi" uniqKey="Yamamoto T" first="Takumi" last="Yamamoto">Takumi Yamamoto (chirurgien)</name>
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