REFERENCES

1. Satava RM. Future Direction in Robotic Surgery. In: Rosen J, Hannaford B, Satava RM, editors. Surgical Robotics. Springer, Boston, MA; 2011.

2. Sant’Anna RT, Prates PRL, Sant’Anna JRM, Prates PR, Kalil RAK, et al. Robotic systems in cardiovascular surgery. Rev Bras Cir Cardiovasc. 2004;19. Available form: http://www.scielo.br/scielo.php?pid=S0102-76382004000200012&script=sci_arttext&tlng=en [Last accessed on 28 Apr 2020].

3. Warwick K. The diminishing human-machine interface. Medical Robotics Reports 2013;2:4-11. Available from: https://bibliotekanauki.pl/articles/2063870. [Last accessed on 28 Apr 2020]

4. Executive Summary World Robotics 2019 Industrial Robots. Available from: https://ifr.org/downloads/press2018/Executive%20Summary%20WR%202019%20Industrial%20Robots.pdf. [Last accessed on 28 Apr 2020].

5. Meara JG, Leather AJM, Hagander L, Alkire BC, Alonso N, et al. Global Surgery 2030: evidence and solutions for achieving health, welfare, and economic development. Lancet 2015;386:569-624.

6. Holmer H, Lantz A, Kunjumen T, Samuel F, Marguerite H, et al. Global distribution of surgeons, anaesthesiologists, and obstetricians. The Lancet Global Health 2015;3:S9-S11.

8. The Lancet. Addressing the global burden of sudden cardiac death. Available from: https://www.thelancet.com [Last accessed on 28 Apr 2020].

9. Weiser TG, Regenbogen SE, Thompson KD, Haynes AB, Lipsitz SR, et al. An estimation of the global volume of surgery: a modelling strategy based on available data. Lancet 2008;372:139-44.

11. Corindus CorPath GRX surgical robot receives clearance in Japan. Available form: https://www.therobotreport.com/corindus-corpath-grx-clearance-japan [Last accessed on 28 Apr 2020].

12. Anvari M, Broderick T, Stein H, Chapman T, Ghodoussi M, et al. The impact of latency on surgical precision and task completion during robotic-assisted remote telepresence surgery. Comput Aided Surg 2005;10:93-9.

13. HealthManagement. Antonio de Lacy 5G opens the future of telesurgery. Available form: https://healthmanagement.org/c/healthmanagement/issuearticle/5g-opens-the-future-of-telesurgery [Last accessed on 28 Apr 2020].

14. Nawrat Z. Robot chirurgiczny - projekty, prototypy, badania, perspektywy. Rozprawa habilitacyjna, Śląski Uniwersytet Medyczny, Katowice 2011.

15. Nawrat Z, Koźlak M. Robin Heart system modelling an training in virtual reality. J Automat Mob Rob Intel Syst 2007;1:62-6.

16. Nawrat Z, Rohr K, Fürjes P, Mucha Ł, Lis K, et al. Force feedback control system dedicated for robin heart surgical robot. Procedia Engineering 2016;168:185-8.

17. Małota Z, Nawrat Z, Sadowski W. In: Konstantinova J, Wurdemann H, Shafti A, Shiva A, Althoefer K, editors. Banchmarking for surgery similators in soft and stiffness-controllable robotics solutions for minimally invasive surgery: the STIFF-FLOP approach. England: River Publishers Series in Automation, control and Robotics.

18. Mucha Ł, Lis K, Lehrich K, Nawra Z. Soft and stiffness-controllable robotics solutions for minimally invasive surgery: the STIFF-FLOP approach. In: Konstantinova J, Wurdemann H, Shafti A, Shiva A, Althoefer K, editors. Anglia: River Publishers Series in Automation, control and Robotics; 2018. pp. 289-305.

19. Nawrat Z, Mucha Ł, Lis K, Lehrich K, Rohr K, et al. Robot chirurgiczny robin heart tele - następca RobinHeart mc2. Med Robotics Rep 2016;5:27-33. Available from: https://yadda.icm.edu.pl/baztech/element/bwmeta1.element.baztech-b0cfde8b-6d6d-4b92-b4ed-3a4596bef28b. [Last accessed on 28 Apr 2020]

20. Nawrat Z. The ethics of artificial organs. M-Studio, Zabrze: ImplantExpert ed Zbigniew Nawrat Zabrze; 2011. pp. 127-35.

21. ‘Slow’ heart surgeon failed to inform fatal patient he was at greater risk from pioneering robot procedure. Available form: https://www.telegraph.co.uk/news/2018/11/06/slow-heart-surgeon-failed-inform-fatal-patient-greater-risk/ [Last accessed on 28 Apr 2020].

22. Maude adverse event report: intuitive surgical, inc, da vinci surgical system endoscopic instrument control system. Available from: https://www.accessdata.fda.gov/scripts/cdrh/cfdocs/cfmaude/Detail.cfm?MDRFOI__ID=3651923. [Last accessed on 28 Apr 2020].

23. Alemzadeh H, Raman J, Lveson N, Kalbarczyk Z, Lyer RK. Adverse event in robotic surgery: a retrospective study of 14 years of FDA data. PLoS One 2016;11:e0151470.

24. da Vinci Robotic Surgery Complications. Available form: https://www.drugwatch.com/davinci-surgery/complications/ [Last accessed on 28 Apr 2020].

25. Bratsberg B, Rogeberg O. Flynn effect and its reversal are both environmentally caused. Proc Natl Acad Sci U S A 2018;115:6674-8.

26. Artificial intelligence is rushing into patient care—and could raise risks. Available form: https://www.scientificamerican.com/article/artificial-intelligence-is-rushing-into-patient-care-and-could-raise-risks/ [Last accessed on 28 Apr 2020].

27. Why was ibm watson a flop in medicine? Available form: https://mindmatters.ai/2019/08/why-was-ibm-watson-a-flop-in-medicine/ [Last accessed on 28 Apr 2020].

28. Esteva A, Kupre B, Novoa RA, Ko J, Swetter SM, et al. Dermatologist-level classification of skin cancer with deep neural networks. Nature 2017;542:115-8.

29. Golomb BA, Lawrence DT, Sejnowski TJ. Sexnet: a neural network identifies sex from human faces. In: Lippman R, Touetzky DS, editors. Advances in neural informationprocessing systems 3. San Mateo, CA: Morgan Kauffman; 1991. pp. 572-7. Available from: https://www.researchgate.net/profile/Terrence_Sejnowski/publication/221619290_SEXNET_A_Neural_Network_Identifies_Sex_From_Human_Faces/links/54a4afed0cf267bdb90679c6.pdf. [Last accessed on 28 Apr 2020]

30. Sejnowski TJ, Reingold SC, Kelley DB, Gelperin A. Localization of [3H]-2-deoxyglucose in single molluscan neurones. Nature 1980;287:449-51.

31. Kuffler SW, Sejnowski TJ. Peptidergic and muscarinic excitation at amphibian sympathetic synapses. J Psychol 1982;341:257-78.

32. Sejnowski TJ. What are they projective fields of cortical neurons? In: van Hemmen JL, Sejnowski TJ, editors. 23 Problems in Systems Neuroscience. New York: Oxfor University Press; 2005. pp. 394-405.

33. Sejnowski TJ. AI will make you smarter. In: Brockman J, editor. What to think about machines that think. New York: Harper Perennial; 2015. pp. 118-20.

34. For the first time, a robot passed a medical licensing exam. Available form: https://futurism.com/first-time-robot-passed-medical-licensing-exam [Last accessed on 28 Apr 2020].

35. A bright future for robotic surgery. Available form: https://openmedscience.com/bright-future-for-robotic-surgeons/ [Last accessed on 28 Apr 2020].

Mini-invasive Surgery
ISSN 2574-1225 (Online)
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