Histidine-tryptophan-ketoglutarate (HTK) preserves rat muscle function during cold storage. We examined the effect of HTK perfusion on preservation of microvascular function during 4 h of warm ischemia and subsequent reperfusion (I/R) in the rat cremaster muscle. Leukocyteendothelium interactions, c
Comparison of the effects of inhalation, epidural, spinal, and combined anesthesia techniques on rat cremaster muscle flap microcirculation
✍ Scribed by Mehmet Bozkurt; Yalcin Kulahci; Fatih Zor; Huseyin Sen; Cengiz Han Acikel; Mustafa Deveci; Murat Turegun; Mustafa Sengezer
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 230 KB
- Volume
- 30
- Category
- Article
- ISSN
- 0738-1085
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✦ Synopsis
Abstract
Background:
This experimental study was designed to investigate and compare the effects of different anesthesia techniques on rat cremaster muscle flap microcirculation.
Methods:
Fifty male Sprague‐Dawley rats (130–150 g body weight) were divided into five experimental groups containing ten animals each. Group I, group II, and group III were designated as inhalation, epidural, and spinal anesthesia groups, respectively. Group IV was designated as a combination group for inhalation and epidural anesthesia. Group V was a combination group of inhalation and spinal anesthesia.
Results:
Group III and group V showed significant increases in the number of rolling and sticking leucocytes and in RBC volume (peripheral stasis) when compared with group I. Blood flow and velocity significantly increased without peripheral stasis in groups II and IV when compared with group I. Although there was no statistically significant difference in the numbers of rolling, sticking, and transmigrating leucocytes or in functional capillary perfusion, group IV had better flow hemodynamics in the peripheral microcirculation when compared with group I.
Conclusions:
The inhalation and epidural anesthesia combination was determined to be the ideal anesthesia technique for improved peripheral microcirculation. Spinal anesthesia, either separately or in combination with inhalation anesthesia, has adverse effects on microcirculation. © 2009 Wiley‐Liss, Inc. Microsurgery, 2010.
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