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Review Article| Volume 38, ISSUE 2, P277-292, April 2011

Dynamic Infrared Thermography

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      References

        • Jiang L.J.
        • Ng E.Y.
        • Yeo A.C.
        • et al.
        A perspective on medical infrared imaging.
        J Med Eng Technol. 2005; 29: 257-267
        • Jones B.F.
        • Plassmann P.
        Digital infrared thermal imaging of human skin.
        IEEE Eng Med Biol Mag. 2002; 21: 41-48
        • Pascoe D.D.
        • Mercer J.B.
        • de Weerd L.
        Physiology of thermal signals.
        in: Diakides N.A. Bronzino J.D. Medical infrared imaging. CRC Press, Taylor & Francis Group, Boca Raton (FL)2008: 6-1-6-20
        • Ammer K.
        • Ring F.E.
        Standard procedures for infrared imaging in medicine.
        in: Diakides N.A. Bronzino J.D. Medical infrared imaging. CRC Press, Taylor & Francis Group, Boca Raton (FL)2008: 22-1-22-9
        • Ring F.E.
        • Jones B.F.
        The historical development of thermometry and thermal imaging in medicine.
        in: Diakides N.A. Bronzino J.D. Medical infrared imaging. CRC Press, Taylor & Francis Group, Boca Raton (FL)2008: 2-1-2-5
        • Jones B.F.
        A reappraisal of the use of infrared thermal image analysis in medicine.
        IEEE Trans Med Imaging. 1998; 17: 1019-1027
        • Francis J.E.
        • Roggli R.
        • Love T.J.
        • et al.
        Thermography as a means of blood perfusion measurements.
        J Biomech Eng. 1979; 101: 246-249
        • Awwad A.M.
        • White R.J.
        • Webster M.H.
        • et al.
        The effect of temperature on blood flow in island and free skin flaps: an experimental study.
        Br J Plast Surg. 1983; 36: 373-382
        • Mercer J.B.
        • de Weerd L.
        The effect of water-filtered infrared (IR)-A (wIRA) irradiation on skin temperature and skin blood flow as evaluated by infrared thermography and scanning laser Doppler imaging.
        Thermol Int. 2005; 15: 89-94
        • Merla A.
        • Di Romualdo S.
        • Di Donato L.
        • et al.
        Combined thermal and laser Doppler imaging in the assessment of cutaneous tissue perfusion.
        Conf Proc IEEE Eng Med Biol Soc. 2007; 2007: 2630-2633
        • Lawson R.N.
        Implications of surface temperatures in the diagnosis of breast cancer.
        Can Med Assoc J. 1956; 75: 309-311
        • Wilson S.B.
        • Spence V.A.
        Dynamic thermography imaging method for quantifying dermal perfusion: potential and limitations.
        Med Biol Eng Comput. 1989; 27: 496-501
        • Iwahashi H.
        • Tashiro T.
        • Morishige N.
        • et al.
        New method of thermal coronary angiography for intraoperative patency control in off-pump and on-pump coronary artery bypass grafting.
        Ann Thorac Surg. 2007; 84: 1504-1507
        • Pabisiak K.
        • Romanowski M.
        • Myslak M.
        • et al.
        Variations in temperature of the donor kidney during cold ischemia time and subsequent assessment of reperfusion using the application of thermovision camera.
        Transplant Proc. 2003; 35: 2157-2159
        • Blondeel P.N.
        Soft tissue reconstruction with perforator flaps.
        in: Siemionow M.Z. Tissue surgery. Springer-Verlag London Limited, Singapore2006: 87-100
        • Granzow J.W.
        • Levine J.L.
        • Chiu E.S.
        • et al.
        Breast reconstruction using perforator flaps.
        J Surg Oncol. 2006; 94: 441-454
        • Busic V.
        • Das-Gupta R.
        • Mesic H.
        • et al.
        The deep inferior epigastric perforator flap for breast reconstruction, the learning curve explored.
        J Plast Reconstr Aesthet Surg. 2006; 59: 580-584
        • Blondeel P.N.
        • Neligan P.C.
        Complications: avoidance and treatment.
        in: Blondeel P.N. Morris S.F. Hallock G.C. Perforator flaps. Anatomy, technique, and clinical applications. Quality Medical Publishing, Inc, St Louis (MO)2008: 116-128
        • Itoh Y.
        • Arai K.
        The deep inferior epigastric artery free skin flap: anatomic study and clinical application.
        Plast Reconstr Surg. 1993; 91: 853-863
        • de Weerd L.
        • Weum S.
        • Mercer J.B.
        The value of dynamic infrared thermography (DIRT) in perforator selection and planning of DIEP flaps.
        Ann Plast Surg. 2009; 63: 274-279
        • Taylor G.I.
        • Palmer J.H.
        The vascular territories (angiosomes) of the body: experimental study and clinical applications.
        Br J Plast Surg. 1987; 40: 113-141
        • Giunta R.E.
        • Geisweid A.
        • Feller A.M.
        The value of preoperative Doppler sonography for planning free perforator flaps.
        Plast Reconstr Surg. 2000; 105: 2381-2386
        • Blondeel P.N.
        One hundred free DIEP flap breast reconstructions: a personal experience.
        Br J Plast Surg. 1999; 52: 104-111
        • Arnež Z.M.
        • Khan U.
        • Pogorelec D.
        • et al.
        Rational selection of flaps from the abdomen in breast reconstruction to reduce donor site morbidity.
        Br J Plast Surg. 1999; 52: 351-354
        • de Weerd L.
        • Mercer J.B.
        • Bøe Setså L.
        Intraoperative dynamic infrared thermography and free-flap surgery.
        Ann Plast Surg. 2006; 57: 279-284
        • Panchapakesan V.
        • Addison P.
        • Beausang E.
        • et al.
        Role of thrombolysis in free-flap salvage.
        J Reconstr Microsurg. 2003; 19: 523-529
        • Rosenbaum T.J.
        • Sundt T.M.
        Thrombus formation and endothelial alterations in microarterial anastomoses.
        J Neurosurg. 1997; 47: 430-441
        • Wolff K.D.
        • Hözle F.
        • Wysluch A.
        • et al.
        Incidence and time of intraoperative vascular complications in head and neck microsurgery.
        Microsurgery. 2008; 28: 143-146
        • Tenorio X.
        • Mahajan A.L.
        • Wettstein R.
        • et al.
        Early detection of flap failure using a new thermographic device.
        J Surg Res. 2009; 151: 15-21
        • Wechselberger G.
        • Schoeller T.
        • Bauer T.
        • et al.
        Venous superdrainage in deep inferior epigastric perforator flap breast reconstruction.
        Plast Reconstr Surg. 2001; 108: 162-164
        • Carramenha e Costa M.A.
        • Carriquiry C.
        • Vasconez L.O.
        • et al.
        An anatomic study of the venous drainage of the transverse rectus abdominis musculocutaneous flap.
        Plast Reconstr Surg. 1987; 79: 208-213
        • 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
        • Celik N.
        • Wei F.C.
        Technical tips in perforator flap harvest.
        Clin Plast Surg. 2003; 30: 469-472
        • Smit J.M.
        • Acosta R.
        • Zeebergts C.J.
        • et al.
        Early reintervention of compromised free flaps improves success rate.
        Microsurgery. 2007; 27: 612-616
        • Jones N.F.
        Intraoperative and postoperative monitoring of microsurgical free tissue transfers.
        Clin Plast Surg. 1992; 19: 783-797
        • de Weerd L.
        • Miland Å.O.
        • Mercer J.B.
        Perfusion dynamics of free DIEP and SIEA flaps during the first postoperative week monitored with dynamic infrared thermography (DIRT).
        Ann Plast Surg. 2009; 62: 40-47
        • Scheflan M.
        • Dinner M.I.
        The transverse abdominal island flap: part II. Surgical technique.
        Ann Plast Surg. 1983; 10: 120-129
        • El-Mrakby H.H.
        • Milner R.H.
        The vascular anatomy of the lower anterior abdominal wall: a microdissection study on the deep inferior epigastric vessels and the perforator branches.
        Plast Reconstr Surg. 2002; 109 ([discussion by Taylor GI, p. 544–7]): 539-543
        • El Mrakby H.H.
        • Milner R.H.
        Bimodal distribution of the blood supply to lower abdominal fat: histological study of the microcirculation of the lower abdominal wall.
        Ann Plast Surg. 2003; 50: 165-170
        • Holm C.
        • Mayr M.
        • Höfter E.
        • et al.
        Perfusion zones of the DIEP flap revisited: a clinical study.
        Plast Reconstr Surg. 2006; 117: 37-43
        • Salmi A.M.
        • Tukiainen E.
        • Asko-Seljavaara S.
        Thermographic mapping of perforators and skin blood flow in the free transverse rectus abdominis musculocutaneous flap.
        Ann Plast Surg. 1995; 35: 159-164
        • Ulusal B.G.
        • Cheng M.H.
        • Wei F.C.
        Breast reconstruction using the entire transverse abdominal adipocutaneous flap based on unilateral superficial or deep inferior epigastric vessels.
        Plast Reconstr Surg. 2006; 117: 1395-1403
        • Cheng M.H.
        • Robles J.A.
        • Ulusal B.G.
        • et al.
        Reliability of zone IV in the deep inferior epigastric perforator flap: a single center’s experience with 74 cases.
        Breast. 2006; 15: 158-166
        • Kroll S.S.
        Fat necrosis in free transverse rectus abdominis myocutaneous and deep inferior epigastric perforator flaps.
        Plast Reconstr Surg. 2000; 106: 576-583
        • Taylor G.I.
        The vascular anatomy of the lower anterior abdominal wall: a microdissection study on the deep inferior epigastric vessels and the perforator branches.
        Plast Reconstr Surg. 2002; 109 ([discussion]): 544-547
        • Schaverien M.
        • Saint-Cyr M.
        • Arbique G.
        • et al.
        Arterial and venous anatomies of the DIEP inferior epigastric perforator and superficial inferior epigastric artery flaps.
        Plast Reconstr Surg. 2008; 121: 1909-1919
        • Nahabedian M.Y.
        Breast reconstruction using the entire transverse abdominal adipocutaneous flap based on unilateral superficial or deep inferior epigastric vessels.
        Plast Reconstr Surg. 2006; 117 ([discussion]): 1404-1406
        • Dhar S.C.
        • Taylor G.I.
        The delay phenomenon: the story unfolds.
        Plast Reconstr Surg. 1999; 104: 2079-2091
        • Aydin M.A.
        • Mavili M.E.
        Examining microcirculation improves the angiosome theory in explaining the delay phenomenon in a rabbit model.
        J Reconstr Microsurg. 2003; 19: 187-194
        • Busic V.
        • Das-Gupta R.
        Temperature monitoring in free flap surgery.
        Br J Plast Surg. 2004; 57: 588
        • Masia J.
        • Clavero J.A.
        • Larraňaga J.R.
        • et al.
        Multidetector-row tomography in the planning of abdominal perforator flaps.
        J Plast Reconstr Aesthet Surg. 2006; 59: 594-599
        • Rozen W.M.
        • Phillips T.J.
        • Ashton M.W.
        • et al.
        Preoperative imaging for DIEA perforator flaps: a comparative study of computed tomographic angiography and Doppler ultrasound.
        Plast Reconstr Surg. 2008; 121: 9-16
        • Brenner D.J.
        • Hall E.J.
        Computed tomography: an increasing source of radiation exposure.
        N Engl J Med. 2007; 357: 2277-2284
        • Lee C.I.
        • Haims A.H.
        • Monico E.P.
        • et al.
        Diagnostic CT scans: assessment of patient, physician, and radiologist awareness of radiation dose and possible risks.
        Radiology. 2004; 231: 393-398
        • Okada Y.
        • Kawamata T.
        • Kawashima A.
        • et al.
        Intraoperative application of thermography in extracranial-intracranial bypass surgery.
        Neurosurgery. 2007; 60: 362-365
        • Wolff K.D.
        • Telzrow T.
        • Rudolph K.H.
        • et al.
        Isotope perfusion and infrared thermography of arterialised, venous flow-through and pedicled venous flaps.
        Br J Plast Surg. 1995; 48: 61-70