J Reconstr Microsurg 2010; 26(8): 559-566
DOI: 10.1055/s-0030-1263292
© Thieme Medical Publishers

New Insight into an Old Paradigm: Wrapping and Dangling with Lower-Extremity Free Flaps

Emily B. Ridgway1 , Richard H. Kutz1 , Jason S. Cooper1 , Lifei Guo1
  • 1Division of Plastic Surgery, Brigham and Women's Hospital, Boston, Massachusetts
Further Information

Publication History

Publication Date:
11 August 2010 (online)

ABSTRACT

Flap edema can often compromise an otherwise successful lower-extremity microsurgical reconstruction. To train a flap toward maturity, various wrapping and dangling protocols have been described. Mixed tissue oxygenation of a myocutaneous free flap for lower-extremity reconstruction is examined as measured by ViOptix with wrapping and unwrapping during dangling at different postoperative time points. The results are compared with the nonaffected lower extremity and additional healthy controls. Upon dangling a reconstructed lower extremity, the tissue oximetry recording of a free flap descended rapidly until the leg was reelevated and then continued at this low level with a gradual return to the predangling baseline. The extent of this drop in tissue oxygenation depended upon positioning, and the length of time to reach its baseline upon reelevation decreased as flap matured postoperatively. In addition, wrapping of a reconstructed lower extremity also decreased the overall drop in tissue oxygenation level and the time to recovery while having no effect on the control. Results of this prospective study can lead to an increased understanding of free flap physiology in lower-extremity reconstruction and can further validate and refine our postoperative management strategies regarding dependency and edema control.

REFERENCES

  • 1 Organek A J, Klebuc M J, Zuker R M. Indications and outcomes of free tissue transfer to the lower extremity in children: review.  J Reconstr Microsurg. 2006;  22 173-181
  • 2 Parrett B M, Matros E, Pribaz J J, Orgill D P. Lower extremity trauma: trends in the management of soft-tissue reconstruction of open tibia-fibula fractures.  Plast Reconstr Surg. 2006;  117 1315-1322 discussion 1323-1324
  • 3 Rohde C, Howell B W, Buncke G M et al.. A recommended protocol for the immediate postoperative care of lower extremity free-flap reconstructions.  J Reconstr Microsurg. 2009;  25 16
  • 4 Xipoleas G, Levine E, Silver L, Koch R M, Taub P J. A survey of microvascular protocols for lower extremity free tissue transfer II: postoperative care.  Ann Plast Surg. 2008;  61 280-284
  • 5 Isenberg J S, Siegal A, Sherman R. Quantitative evaluation of the effects of gravity and dependency on microvascular tissue transfer to the lower limb, with clinical applications.  J Reconstr Microsurg. 1997;  13 25-29
  • 6 Mao J M, Wright L, Elmandjra M. Application of near-infrared spectroscopy in monitoring blood perfusion in digital replantation.  Proc SPIE. 2005;  5692 382-389
  • 7 Severinghaus J W, Honda Y. History of blood gas analysis. VII. Pulse oximetry.  J Clin Monit. 1987;  3 135-138
  • 8 Starling E H. On the absorption of fluids from the connective tissue spaces.  J Physiol. 1896;  19 312-326
  • 9 Cherry G W, Myers M B, Ardran G, Ryan T J, Ryan T J. The effects of gravity on delayed and transplanted delayed tubed flaps.  Plast Reconstr Surg. 1979;  64 156-162
  • 10 Myers M B, Cherry G, Bombet R. On the lack of any effect of gravity on the survival of tubed flaps. An experimental study in rabbits and pigs.  Plast Reconstr Surg. 1973;  51 428-431
  • 11 Crandall C G, Shibasaki M, Yen T C. Evidence that the human cutaneous venoarteriolar response is not mediated by adrenergic mechanisms.  J Physiol. 2002;  538(Pt 2) 599-605
  • 12 Henriksen O. Local sympathetic reflex mechanism in regulation of blood flow in human subcutaneous adipose tissue.  Acta Physiol Scand Suppl. 1977;  450 1-48
  • 13 Keller A. Noninvasive tissue oximetry for flap monitoring: an initial study.  J Reconstr Microsurg. 2007;  23 189-197
  • 14 Fujino T. Contribution of the axial and perforator vasculature to circulation in flaps.  Plast Reconstr Surg. 1967;  39 125-137
  • 15 Fukui A, Tamai S, Williams H B. The importance of venous drainage in rat flaps: an experimental study.  J Reconstr Microsurg. 1989;  5 19-30
  • 16 Chow S P, Chen D Z, Gu Y D. The significance of venous drainage in free flap transfer.  Plast Reconstr Surg. 1993;  91 713-715
  • 17 Miles D A, Crosby N L, Clapson J B. The role of the venous system in the abdominal flap of the rat.  Plast Reconstr Surg. 1997;  99 2030-2033

Lifei GuoM.D. Ph.D. F.A.C.S. 

Division of Plastic Surgery, Brigham and Women's Hospital

Harvard Medical School, 75 Francis Street, Boston, MA 02215

Email: lguo@partners.org

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