Page 69 - Read Online
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Cevallos et al. Plast Aesthet Res 2023;10:30  https://dx.doi.org/10.20517/2347-9264.2023.01  Page 17 of 17

                    monitoring. Ann Chir Plast Esthet 2014;59:15-21.  DOI  PubMed
               122.      Sitzman TJ, Hanson SE, King TW, Gutowski KA. Detection of flap venous and arterial occlusion using interstitial glucose
                    monitoring in a rodent model. Plast Reconstr Surg 2010;126:71-9.  DOI
               123.      Zhang C, Wang Q, Wu L, Wang J, Zhao S, Wang J. Continuous interstitial glucose measurement for flap venous occlusion
                    monitoring in a diabetic model. J Craniofac Surg 2022;33:2698-703.  DOI
               124.      Giatsidis G. Discussion: flap blood glucose as a sensitive and specific indicator for flap venous congestion: a rodent model study.
                    Plast Reconstr Surg 2019;144:419e-20e.  DOI  PubMed
               125.      Mochizuki K, Mochizuki M, Gonda K. Flap blood glucose as a sensitive and specific indicator for flap venous congestion: a rodent
                    model study. Plast Reconstr Surg 2019;144:409e-18e.  DOI  PubMed
               126.      Sommer T. Microdialysis of the bowel: the possibility of monitoring intestinal ischemia. Expert Rev Med Devices 2005;2:277-86.
                    DOI  PubMed
               127.      Dakpé S, Colin E, Bettoni J, et al. Intraosseous microdialysis for bone free flap monitoring in head and neck reconstructive surgery: a
                    prospective pilot study. Microsurgery 2020;40:315-23.  DOI  PubMed  PMC
               128.      Udesen A, Løntoft E, Kristensen SR. Monitoring of free TRAM flaps with microdialysis. J Reconstr Microsurg 2000;16:101-6.  DOI
                    PubMed
               129.      Röjdmark J, Blomqvist L, Malm M, Adams-Ray B, Ungerstedt U. Metabolism in myocutaneous flaps studied by in situ
                    microdialysis. Scand J Plast Reconstr Surg Hand Surg 1998;32:27-34.  DOI  PubMed
               130.      Jyränki J, Suominen S, Vuola J, Bäck L. Microdialysis in clinical practice: monitoring intraoral free flaps. Ann Plast Surg
                    2006;56:387-93.  DOI  PubMed
               131.      Top H, Sarikaya A, Aygit AC, Benlier E, Kiyak M. Review of monitoring free muscle flap transfers in reconstructive surgery: role of
                    99mTc sestamibi scintigraphy. Nucl Med Commun 2006;27:91-8.  DOI  PubMed
               132.      Aygit AC, Sarikaya A. Technetium 99m sestamibi scintigraphy for noninvasive assessment of muscle flap viability. Ann Plas Surg
                    1999;43:338-40.  DOI  PubMed
               133.      Sarikaya A, Aygit AC. Combined 99mTc MDP bone SPECT and 99mTc sestamibi muscle SPECT for assessment of bone regrowth
                    and free muscle flap viability in an electrical burn of scalp. Burns 2003;29:385-8.  DOI
               134.      Prantl L, Fellner C, Jung ME. Evaluation of free flap perfusion with dynamic contrast-enhanced magnetic resonance imaging. Plast
                    Reconstr Surg 2010;126:100e-1e.  DOI  PubMed
               135.      Fellner C, Jung EM, Prantl L. Dynamic contrast-enhanced MRI as a valuable non-invasive tool to evaluate tissue perfusion of free
                    flaps: preliminary results. Clin Hemorheol Microcirc 2010;46:77-87.  DOI  PubMed
               136.      Lee C, Chen C, Wang H, Chen L, Perng C. Utilizing mask RCNN for monitoring postoperative free flap: circulatory compromise
                    detection based on visible-light and infrared images. IEEE Access 2022;10:109510-25.  DOI
               137.      Lee C, Chen C, Hsu F, et al. A postoperative free flap monitoring system: circulatory compromise detection based on visible-light
                    image. IEEE Access 2022;10:4649-65.  DOI
               138.      Matsui C, Lao WW, Tanaka T, et al. Real-time assessment of free flap capillary circulation using videocapillaroscopy. Plast Reconstr
                    Surg 2022;150:407-13.  DOI
               139.      Bucknor A, Kamali P, Maylar M, et al. Abstract 126: Improving post-operative monitoring of autologous breast reconstruction: a
                    novel, oxygen-sensing liquid bandage first-in-human trial. Prs-Glob Open 2018;6:98-9.  DOI
               140.      Hummelink SLM, Paulus VAA, Wentink EC, Ulrich DJO. Development and evaluation of a remote patient monitoring system in
                    autologous breast reconstruction. Plast Reconstr Surg Glob Open 2022;10:e4008.  DOI  PubMed  PMC
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