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Published in: Journal of Robotic Surgery 4/2010

01-01-2010 | Case Report

Robotic hypospadias surgery: a new evolution

Authors: Pasquale Casale, Thomas S. Lendvay

Published in: Journal of Robotic Surgery | Issue 4/2010

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Abstract

The dictum that “there is nothing new in surgery not previously described,” is quoted regularly and is particularly true of hypospadias. There is an ongoing search for solutions to many troublesome issues concerning surgical treatment of hypospadias, such as what age is the most appropriate to apply surgery, or in how many stages surgery should be performed. We present a case report of the first robotic hypospadias surgery to propose a departure from the standard practice, in the hope of expanding medical expertise and teaching globally. The use of a robot for reconstructive surgery is not novel; its use for extracorporeal surgery is, but we contend that there is no difference in the surgical steps to carry out a hypospadias repair. In addition, we envision that the benefits of applying robotic surgery for extracorporeal reconstructive procedures will greatly impact the current paradigm of surgery and surgical education. For those surgeons who already possess comfort with robotic skills, reconstructive procedures outside of a major cavity are feasible, and time will provide safety and efficacy data. Our hope is that others will join in the advancement of telesurgery and its applications and appreciate the potential expansion of surgical knowledge that will be afforded by this change in how we teach and operate.
Literature
1.
go back to reference Baskin LS (2000) Hypospadias, anatomy, embryology, and reconstructive techniques. Braz J Urol 26:621–629 Baskin LS (2000) Hypospadias, anatomy, embryology, and reconstructive techniques. Braz J Urol 26:621–629
2.
go back to reference Durham Smith E (1997) The history of hypospadias. Pediatr Surg Int 12(2–3):81–85CrossRef Durham Smith E (1997) The history of hypospadias. Pediatr Surg Int 12(2–3):81–85CrossRef
3.
go back to reference Papanikolaou ED, Yonkov AS (2006) Historical aspects of hypospadias—a literature review. Folia Med (Plovdiv) 48(3–4):29–35 Papanikolaou ED, Yonkov AS (2006) Historical aspects of hypospadias—a literature review. Folia Med (Plovdiv) 48(3–4):29–35
4.
go back to reference Chang A, Fan J, Kim S, Leone N, Carr M, Zderic S, Snyder H, Kolon T, Canning D (2008) Complications of hypospadias surgery are higher in boys with cryptorchidism. J Urol 179(4):409–409CrossRef Chang A, Fan J, Kim S, Leone N, Carr M, Zderic S, Snyder H, Kolon T, Canning D (2008) Complications of hypospadias surgery are higher in boys with cryptorchidism. J Urol 179(4):409–409CrossRef
5.
go back to reference Ballantyne GH (2002) Robotic surgery, telerobotic surgery, telepresence, and telementoring. Review of early clinical results. Surg Endosc 16:1389CrossRefPubMed Ballantyne GH (2002) Robotic surgery, telerobotic surgery, telepresence, and telementoring. Review of early clinical results. Surg Endosc 16:1389CrossRefPubMed
6.
go back to reference Abbou C-C, Hoznek A, Salomon L, Olsson LE, Lobontiu A, Saint F et al (2001) Laparoscopic radical prostatectomy with a remote controlled robot. J Urol 165:1964CrossRefPubMed Abbou C-C, Hoznek A, Salomon L, Olsson LE, Lobontiu A, Saint F et al (2001) Laparoscopic radical prostatectomy with a remote controlled robot. J Urol 165:1964CrossRefPubMed
7.
go back to reference Menon M, Tewari A, Baize B, Guillonneau B, Vallencien G (2002) Prospective comparison of radical retropubic prostatectomy and robot-assisted anatomic prostatectomy: the Vattikuti Urology Institute experience. Urology 60:864CrossRefPubMed Menon M, Tewari A, Baize B, Guillonneau B, Vallencien G (2002) Prospective comparison of radical retropubic prostatectomy and robot-assisted anatomic prostatectomy: the Vattikuti Urology Institute experience. Urology 60:864CrossRefPubMed
8.
9.
go back to reference Schoor RA, Ross L, Niederberger C (2003) Robotic assisted microsurgical vassal reconstruction in a model system. World J Urol 21:48PubMed Schoor RA, Ross L, Niederberger C (2003) Robotic assisted microsurgical vassal reconstruction in a model system. World J Urol 21:48PubMed
10.
go back to reference Schiff J, Li PS, Goldstein M (2004) Robotic microsurgical vasovasostomy and vasoepididymostomy: a prospective randomized study in a rat model. J Urol 171(4):1720–1725CrossRefPubMed Schiff J, Li PS, Goldstein M (2004) Robotic microsurgical vasovasostomy and vasoepididymostomy: a prospective randomized study in a rat model. J Urol 171(4):1720–1725CrossRefPubMed
11.
go back to reference Marescaux J, Smith MK, Fölscher D, Jamali F, Malassagne B, Leroy J (2001) Telerobotic laparoscopic cholecystectomy: initial clinical experience with 25 patients. Ann Surg 234(1):1–7CrossRefPubMed Marescaux J, Smith MK, Fölscher D, Jamali F, Malassagne B, Leroy J (2001) Telerobotic laparoscopic cholecystectomy: initial clinical experience with 25 patients. Ann Surg 234(1):1–7CrossRefPubMed
12.
go back to reference Bagrodia A, Raman JD (2009) Ergonomics considerations of radical prostatectomy: physician perspective of open, laparoscopic, and robot-assisted techniques. J Endourol 23(4):627–633CrossRefPubMed Bagrodia A, Raman JD (2009) Ergonomics considerations of radical prostatectomy: physician perspective of open, laparoscopic, and robot-assisted techniques. J Endourol 23(4):627–633CrossRefPubMed
13.
go back to reference Kitagawa M, Dokko D, Okamura AM, Yuh DD (2005) Effect of sensory substitution on suture-manipulation forces for robotic surgical systems. J Thorac Cardiovasc Surg 129(1):151–158CrossRefPubMed Kitagawa M, Dokko D, Okamura AM, Yuh DD (2005) Effect of sensory substitution on suture-manipulation forces for robotic surgical systems. J Thorac Cardiovasc Surg 129(1):151–158CrossRefPubMed
14.
go back to reference De S, Rosen J, Dagan A, Hannaford B, Swanson P, Sinanan M (2007) Assessment of tissue damage due to mechanical stresses. Int J Robotics Res 26:1159–1171CrossRef De S, Rosen J, Dagan A, Hannaford B, Swanson P, Sinanan M (2007) Assessment of tissue damage due to mechanical stresses. Int J Robotics Res 26:1159–1171CrossRef
15.
go back to reference Xia T, Baird C, Jallo G, Hayes K, Nakajima N, Hata N, Kazanzides P (2008) An integrated system for planning, navigation and robotic assistance for skull base surgery. Int J Med Robot 4(4):321–330PubMed Xia T, Baird C, Jallo G, Hayes K, Nakajima N, Hata N, Kazanzides P (2008) An integrated system for planning, navigation and robotic assistance for skull base surgery. Int J Med Robot 4(4):321–330PubMed
16.
go back to reference Valentine RJ, Rege RV (2004) Integrating technical competency into the surgical curriculum: doing more with less. Surg Clin North Am 84(6):1647–1667CrossRefPubMed Valentine RJ, Rege RV (2004) Integrating technical competency into the surgical curriculum: doing more with less. Surg Clin North Am 84(6):1647–1667CrossRefPubMed
17.
go back to reference Maizels M, Yerkes EB, Macejko A, Hagerty J, Chaviano AH, Cheng EY, Liu D, Sarwark JP, Corcoran JF, Meyer T, Kaplan WE (2008) A new computer enhanced visual learning method to train urology residents in pediatric orchiopexy: a prototype for Accreditation Council for Graduate Medical Education documentation. J Urol 180(4 Suppl):1814–1818CrossRefPubMed Maizels M, Yerkes EB, Macejko A, Hagerty J, Chaviano AH, Cheng EY, Liu D, Sarwark JP, Corcoran JF, Meyer T, Kaplan WE (2008) A new computer enhanced visual learning method to train urology residents in pediatric orchiopexy: a prototype for Accreditation Council for Graduate Medical Education documentation. J Urol 180(4 Suppl):1814–1818CrossRefPubMed
18.
go back to reference Lendvay TS, Casale P, Sweet R, Peters C (2008) VR robotic surgery: randomized blinded study of the dV-Trainer robotic simulator. Stud Health Technol Inform 132:242–244PubMed Lendvay TS, Casale P, Sweet R, Peters C (2008) VR robotic surgery: randomized blinded study of the dV-Trainer robotic simulator. Stud Health Technol Inform 132:242–244PubMed
19.
go back to reference Kenney PA, Wszolek MF, Gould JJ, Libertino JA, Moinzadeh A (2009) Face, content, and construct validity of dV-trainer, a novel virtual reality simulator for robotic surgery. Urology 73(6):1288–1292CrossRefPubMed Kenney PA, Wszolek MF, Gould JJ, Libertino JA, Moinzadeh A (2009) Face, content, and construct validity of dV-trainer, a novel virtual reality simulator for robotic surgery. Urology 73(6):1288–1292CrossRefPubMed
Metadata
Title
Robotic hypospadias surgery: a new evolution
Authors
Pasquale Casale
Thomas S. Lendvay
Publication date
01-01-2010
Publisher
Springer-Verlag
Published in
Journal of Robotic Surgery / Issue 4/2010
Print ISSN: 1863-2483
Electronic ISSN: 1863-2491
DOI
https://doi.org/10.1007/s11701-009-0165-3

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