Robot-Assisted Thoracofemoral Bifurcation Bypass

Vladimir А. Porkhanov , Aslan B. Zakeryayev , Roman А. Vinogradov , Tarlan E. Bakhishev , Gerey А. Khangereyev , Sultan R. Butayev , Аnastasiyа V. Erastova , Aleksandr G. Baryshev

I.P. Pavlov Russian Medical Biological Herald ›› 2023, Vol. 31 ›› Issue (4) : 663 -670.

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I.P. Pavlov Russian Medical Biological Herald ›› 2023, Vol. 31 ›› Issue (4) : 663 -670. DOI: 10.17816/PAVLOVJ248977
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Robot-Assisted Thoracofemoral Bifurcation Bypass

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Abstract

INTRODUCTION: Thoracofemoral bypass surgery for occlusion of aortofemoral segment is a variant of choice for treatment of patients with impossibility of performing traditional aortofemoral bypass. The use of robot-assisted technologies in the formation of a proximal anastomosis permits to reduce the trauma of surgical access and to improve the results of surgical intervention. The article reports a case of a patient with occlusion of the aorto-iliac segment and total calcification of the infrarenal aorta, who underwent robot-assisted thoracofemoral bifurcation bypass surgery.

CONCLUSION: Use of modern technologies in the vascular surgery permits to reduce traumatization, minimize the effect of the human factor, improve visualization and freedom of movement and shorten the recovery period and the period of hospital stay.

Keywords

vascular surgery / thoracofemoral bypass / robot-assisted surgery / da Vinci surgical robot / aortofemoral bifurcation bypass / laparoscopic vascular surgery / minimally invasive surgery

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Vladimir А. Porkhanov, Aslan B. Zakeryayev, Roman А. Vinogradov, Tarlan E. Bakhishev, Gerey А. Khangereyev, Sultan R. Butayev, Аnastasiyа V. Erastova, Aleksandr G. Baryshev. Robot-Assisted Thoracofemoral Bifurcation Bypass. I.P. Pavlov Russian Medical Biological Herald, 2023, 31(4): 663-670 DOI:10.17816/PAVLOVJ248977

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References

[1]

Zelinskiy VA, Melnikov MV, Barsukov AYe, et al. An abdominal aortic calcification as a risk factor for cardio-cerebral events in patients with peripheral arterial disease. Klinitsist. 2012;(3–4):33–7. (In Russ).

[2]

Зелинский В.А., Мельников М.В., Барсуков А.Е., и др. Кальциноз брюшной аорты как фактор риска кардиоцеребральных осложнений у больных периферическим атеросклерозом // Клиницист. 2012. № 3–4. С. 33–37.

[3]

Köksal C, Sarikaya S, Zengin M. Thoracofemoral bypass for treatment of juxtarenal aortic occlusion. Asian Cardiovasc Thorac Ann. 2002;10(2):141–4. doi: 10.1177/021849230201000211

[4]

Köksal C., Sarikaya S., Zengin M. Thoracofemoral bypass for treatment of juxtarenal aortic occlusion // Asian Cardiovasc. Thorac. Ann. 2002. Vol. 10, No. 2. P. 141–144. doi: 10.1177/021849230201000211

[5]

Lin JC. The role of robotic surgical system in the management of vascular disease. Ann Vasc Surg. 2013;27(7):976–83. doi: 10.1016/j.avsg.2013.02.004

[6]

Lin J.C. The role of robotic surgical system in the management of vascular disease // Ann. Vasc. Surg. 2013. Vol. 27, No. 7. P. 976–983. doi: 10.1016/j.avsg.2013.02.004

[7]

Magomedova GF, Sarkhanidze YaM, Lepshokov MK, et al. Robot-assisted operations in vascular surgery. Angiology and Vascular Surgery. 2020;26(2):190–6. (In Russ). doi: 10.33529/ANGI02020202

[8]

Магомедова Г.Ф., Сарханидзе Я.М., Лепшоков М.К., и др. Робот-ассистированные операции в сосудистой хирургии // Ангиология и сосудистая хирургия. 2020. Т. 26, № 2. С. 190–196. doi: 10.33529/ANGI02020202

[9]

Mosoyan MS, Fedorov DA. Modern robotics in medicine. Translational Medicine. 2020;7(5):91–108. (In Russ). doi: 10.18705/2311-4495-2020-7-5-91-108

[10]

Мосоян М.С., Федоров Д.А. Современная робототехника в медицине // Трансляционная медицина. 2020. Т. 7, № 5. С. 91–108. doi: 10.18705/2311-4495-2020-7-5-91-108

[11]

Saaya ShB, Rabtsun AA, Popova IV, et al. Robotic-assisted operations for pathology of the aortoiliac segment: own experience. Angiology and Vascular Surgery. 2020;26(4):90–6. (In Russ.). doi: 10.33529/ANGIO2020409

[12]

Саая Ш.Б., Рабцун А.А., Попова И.В., и др. Робот-ассистированные операции при патологии аорто-подвздошного сегмента: наш опыт // Ангиология и сосудистая хирургия. 2020. Т. 26, № 4. С. 90–96. doi: 10.33529/ANGIO2020409

[13]

Stádler P. Role of the robot in totally laparoscopic aortic repair for occlusive and aneurysmal disease. Acta Chir Belg. 2009;109(3):300–5. doi: 10.1080/00015458.2009.11680429

[14]

Stádler P. Role of the robot in totally laparoscopic aortic repair for occlusive and aneurysmal disease // Acta Chir. Belg. 2009. Vol. 109, No. 3. P. 300–305. doi: 10.1080/00015458.2009.11680429

[15]

McCarthy WJ, Mesh CL, McMillan WD, et al. Descending thoracic aorta-to-femoral artery bypass: ten years' experience with a durable procedure. J Vasc Surg. 1993;17(2):336–348. doi: 10.1016/0741-5214(93)90419-M

[16]

McCarthy W.J., Mesh C.L., McMillan W.D., et al. Descending thoracic aorta-to-femoral artery bypass: ten years' experience with a durable procedure // J. Vasc. Surg. 1993. Vol. 17, No. 2. P. 336–348. doi: 10.1016/0741-5214(93)90419-M

[17]

Jongkind V, Diks J, Yeung KK, et al. Mid-term results of robot-assisted laparoscopic surgery for aortoiliac occlusive disease. Vascular. 2011;19(1):1–7. doi: 10.1258/vasc.2010.oa0249

[18]

Jongkind V., Diks J., Yeung K.K., et al. Mid-term results of robot-assisted laparoscopic surgery for aortoiliac occlusive disease // Vascular. 2011. Vol. 19, No. 1. P. 1–7. doi: 10.1258/vasc.2010.oa0249

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