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[1] P. K.Papasavas, R. J.Keenan, W. W.Yeaney, P. F.Caushaj, D. J.Gagné, and R. J.Landreneau. Eectiveness of laparoscopic fundoplication in relieving the symptoms of gastroesophageal reux disease (gerd) and eliminating antireux medical therapy. Surg Endosc, 17(8):12001205, Aug 2003.

[2] H.Buchwald. Management of morbid obesity: surgical options. J Fam Pract, Suppl:S10S17, Mar 2005.

[3] G.Blackburn and E.Mun. Therapy insight: weight-loss surgery and major cardiovascular risk factors. Nat Clin Pract Cardiovasc Med, 2(11):585591, Nov 2005.

[4] B. Sha, C. M. Mery, G. Binyamin, and S. Dutta. Natural orice trans- lumenal endoscopic surgery (notes). Semin Pediatr Surg, 15(4):251258, Nov 2006.

[5] M. S. Kavic, B. Mirza, W. Horne, and J. B. Moskowitz. Notes: issues and technical details with introduction of notes into a small general surgery residency program. JSLS, 12(1):3745, 2008.

[6] Y.Mintz, S.Horgan, J.Cullen, D.Stuart, E.Falor, and M.Talamini. Notes:

a review of the technical problems encountered and their solutions. J Laparoendosc Adv Surg Tech A, 18(4):583587, Aug 2008.

[7] E. H. Spaulding. Chemical versus physical cleansing. Infect Control, 4(1):89, 1983.

[8] E. H. Spaulding. Fiberoptic endoscopes: disinfection or sterilization?

microbiological aspects of the dilemma. Same Day Surg, 2(3):3539, Mar 1978.

[9] A.Gray. Endotracheal tubes. Clin Chest Med, 24(3):379387, Sep 2003.

104

(2)

[10] C.D. Wells and D.E.Fleischer. Overtubes in gastrointestinal endoscopy.

Am J Gastroenterol, 103(3):745752, Mar 2008.

[11] Technology assessment status evaluation: overtube use in gastroin- testinal endoscopy march 1996. Gastroenterol Nurs, 21(6):265267, 1998.

[12] C.Brenna and M.D.Bounds. Endoscopic retrieval devices. Techniques in Gastrointestinal Endoscopy, 8(1):16  21, 2006. Endoscopic Accessories.

[13] J.Chang and C.Yen. Endoscopic retrieval of multiple fragmented gastric bamboo chopsticks by using a exible overtube. World J Gastroenterol, 10(5):769770, Mar 2004.

[14] C.S.Reuss, S.L.Triester, J.J.Lynch, R.Heigh, and D.Fleischer. Eso- phageal overtube facilitation of transesophageal echocardiography in patients with previously dicult esophageal intubation. J Am Soc Echocardiogr, 20(3):285289, Mar 2007.

[15] C.Quan, G.Chen, M. Lee-Henderson, M.Kalpakian, S.Chan, T.Tran, P.Enayati, G.Dulai, F.Kitahara, I.Arnott, J.Sul, and R.Jutabha.

Overtube-assisted placement of wireless capsule endoscopy device.

Gastrointest Endosc, 61(7):914916, Jun 2005.

[16] D.Cole and M.Harris. Overtube introducer for use in endoscopic bariatric surgery. (US20080175274), Jan 2009, US20080175274.

[17] W.Gibbon and G.J.Skerven. Steeralble overtube. Nov 2008, WO2008140890.

[18] W.Friedberg. Natural orice transluminal endoscopic surgery and method of introducing multiple instruments. Sep 2008, WO2008115505.

[19] A.Akihiro. Guide tube. Nat University Corp Tokyo Medi (JP), Oct 2007, WO2007052474.

[20] D.Secrest. Overtube assembly. Apr 2007, EP1768540.

[21] D.Secrest. Overtube assembly. Dec 2005, US2005267331.

[22] G.Weller and C.Gerbi. Overtube apparatus for insertion into a body.

Jun 2006, US2006142787.

[23] K.Wolcott. Esophageal overtube for smoke evacuation. Olympus America Inc (US), Dec 1998, US5846182.

(3)

[24] V. Saadat. Shape lockable apparatus and method for advancing an instrument through unsupported anatomy. USGI Medical Inc (US), May 2006, US2006111614.

[25] V.Saadat. Shape lockable apparatus and method for advancing an in- strument through unsupported anatomy. USGI Medical Inc (US), Nov 2005, US2005250990.

[26] V.Saadat. Shape lockable apparatus and method for advancing an in- strument through unsupported anatomy. USGI Medical Inc (US), Jun 2005, US2005137456.

[27] R.Ewers and V.Saadat. Shape lockable apparatus and method for ad- vancing an instrument through unsupported anatomy. USGI Medical Inc (US), Jun 2005, US2005137455.

[28] Z.Suzuki and Y.Izumi. Guide tube. Jun 1995, JP1993031474.

[29] M.Yamamoto, Z.Suzuki, and Y.Izumi. Endoscopic guide tube wi- th embedded coil pring. Sumitomo Bakelite Co (JP), Jun 1997, US2005643174.

[30] M.Ishikawa, K.Suzuki, and A.Kaloo. Guide tube. Olympus Optical Corp (JP), Dec 2003, US20030229296.

[31] A.Akihiro and T.Kiichiro. Guide tube. May 2007, WO2007052474.

[32] M.K.Ferguson and D.Schucart. Protective tube laser endoscopy. Arch Development (US), May 1994, US2005308317.

[33] M.Miyamoto and T.Kogasaka. Overtube and medical procedure via natural orice using the same. Olympus medical System Corp (JP), Mar 2007, US20070167676.

[34] S.Rosemurgy and B.Bross. Endoscopic overtube. University of South California, Mar 2009, WO2009029655.

[35] W.Koss. Endotube. May 1989, US4825861.

[36] P.Callas. Endoscopic surgical access port and nethod. Origin Med System Inc (US), 2007, US200727607.

[37] J.Devierre and K.Kennedy. Endoscopic surgical device amd methods of articulating an external accessoty channel. Wilson Cook Medical Inc (US), Oct 2005, US200234297.

(4)

[38] L.Bayer and J.Higgins. Surgical port with embedded imaging device.

Feb 2008, US20033450.

[39] F.Bimbo and C.Garris. Dual lumen access port. Mar 2002, US200217800.

[40] W.Warren. Endoscopic access assembly. Jan 1997, US5545179.

[41] K.Binmoeller and M.Yurek. Expandable esophageal access device. Nov 2007, US2007270978.

[42] T.Mahahs and R. Ewers. Flexible shaft system having interchangeable end eectors. USGI Medical Inc (US), Aug 2006, WO2006089217.

[43] V.Saadat and R.Ewers. Endoluminal tool deployment system. USGI Medical Inc (US), Mar 2006, US20060065397.

[44] B.Wiltshire, R.Ewers, and V.Saadat. Endoluminal tool deployment system. Jul 2004, US20040138529.

[45] V.Saadat and C.Rothe. Endoluminal tool deployment system. USGI Medical Inc (US), Dec 2004, US20040249367.

[46] Y.Bar-Or. Endoscope with protective sleeve. Sightline Tech LTD (US), Jan 2007, US20070255101.

[47] Y.Bar-Or and A.Strauss. Endoscope with protective sleeve. Jan 2008, US20080015414.

[48] W.Harkrider. Endoluminalmultiluminal surgical sheath. Oct 2000, WO2000/57937.

[49] D.Pruitt. Multilumen medical device. Aug 2001.

[50] D.Boulais. Multiple lumen assembly for use in endoscopes or other medical devices. Nov 2007, WO2007/124210.

[51] M.Schena and D.Shafer. Minimally invasive surgical illumination.

Intuitive Surgical Inc (US), May 2008, US2008/0064931.

[52] A.Conlan. Auxiliary thoracic endoscope for minimally invasive surgery.

Jul 1998, WO98/32380.

[53] J.Shipp. Led illumination system for endoscopic cameras. Surgicon Inc (US), Feb 2003, US2003/035048.

(5)

[54] S.Farritor and D.Oleynikov. Surgical camera robot. University of Nebraska (US), Apr 2006, US2006/0198619.

[55] S.Farritor and D.Oleynikov. Surgical camera robot. University of Nebraska (US), Mar 2008, US2008/0058989.

[56] K.Irion. Endoscope with led illumination. Karl Storz GmbH, Aug 2002,US2002/120181.

[57] J.Klootz. Led illumination for surgical andoscopes and industrial rigid boroscopes. May 2006, US2006/041192.

[58] M.Farr. Solid state illumination for endoscopy. Apr 2006, WO2006/037034.

[59] R.Hadani. Endoscopic sheath with illumination system. Vision Sciences Inc (US), Jun 2006, WO2006/060457.

[60] P. Swain. The shapelock system adapted to intragastric and transgastric surgery. Endoscopy, 39(5):466470, May 2007.

[61] L. Swanstrom, R. Kozarek, P. Pasricha, S. Gross, D. Birkett, P. Park, V. Saadat, R. Ewers, and P. Swain. Development of a new access device for transgastric surgery. J Gastrointest Surg, 9(8):112936; discussion 11367, Nov 2005.

[62] M. E. Rentschler, J. Dumpert, S. R. Platt, S. M. Farritor, and D. Oley- nikov. Mobile in vivo biopsy and camera robot. Stud Health Technol Inform, 119:449454, 2006.

[63] M. E. Rentschler, J. Dumpert, S. R. Platt, S. I. Ahmed, S. M. Farritor, and D. Oleynikov. Mobile in vivo camera robots provide sole visual feedback for abdominal exploration and cholecystectomy. Surg Endosc, 20(1):135138, Jan 2006.

[64] D. Oleynikov, M. Rentschler, A. Hadzialic, J. Dumpert, S. R. Platt, and S. Farritor. Miniature robots can assist in laparoscopic cholecystectomy.

Surg Endosc, 19(4):473476, Apr 2005.

[65] M. E. Rentschler and D. Oleynikov. Recent in vivo surgical robot and mechanism developments. Surg Endosc, 21(9):14771481, Sep 2007.

[66] J.D.Long and R.C.Orlando. Anatomy, histology, embriology and deve- lopmental abnormalities of the esophagus. Gastrointestinal and Liver disease, pages 551560, 2002.

(6)

[67] H.Gray. Anatomy of the human body. 1918.

http://www.nature.com/gimo/contents.

[68] H.F.Netter. Atlas of Human Anatomy. 2006.

[69] B.Kuo and D.Urma. Esophagus - anatomy and development. GI Motility online, 2006. http://www.nature.com/gimo/contents.

[70] D. V.Sivarao and R. K.Goyal. Functional anatomy and physiology of the upper esophageal sphincter. Am J Med, 108 Suppl 4a:27S37S, Mar 2000.

[71] H. J.Stein, S.Singh, and T. R.Demeester. 'ecacy' of esophageal peristalsis: a manometric parameter to quantify esophageal body dysfunction. Dis Esophagus, 17(4):297303, 2004.

[72] R.K.Mittal. Measuring esophageal distention by high-frequency intra- luminal ultrasound probe. Am J Med, 115 Suppl 3A:130S136S, Aug 2003.

[73] F.Mearin, C.Vasconez, N.Zárate, and J. R.Malagelada. Esophageal tone in patients with total aperistalsis: gastroesophageal reux disease versus achalasia. Am J Physiol Gastrointest Liver Physiol, 279(2):G374G379, Aug 2000.

[74] I.Vanags, A.Petersons, V.Ose, I.Ozolanta, V.Kasyanov, J.Laizans, E.Vjaters, J.Gardovskis, and A.Vanags. Biomechanical properties of oesophagus wall under loading. J Biomech, 36(9):13871390, Sep 2003.

[75] K.Gibinski, A.Nowak, and T.Marek. Digestive endoscopy from rigid to

ber-optic instruments; the polish contribution to the development of gastrointestinal endoscopy. J Physiol Pharmacol, 54 Suppl 3:283327, Dec 2003.

[76] D. S.Zimmon and M. A.Tesler. A controlled comparison of rigid and ber optic esophagoscopy. Gastrointest Endosc, 14(4):220221, May 1968.

[77] A.C. H. Lee, D.S. Elson, M. A. Neil, S.Kumar, B. W. Ling, F. Bello, and G.Hanna. Solid-state semiconductors are better alternatives to arc- lamps for ecient and uniform illumination in minimal access surgery.

Surg Endosc, 23(3):518526, Mar 2009.

[78] C. Hensman, G. B. Hanna, T. Drew, H. Moseley, and A. Cuschieri.

Total radiated power, infrared output, and heat generation by cold light

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sources at the distal end of endoscopes and ber optic bundle of light cables. Surg Endosc, 12(4):335337, Apr 1998.

[79] M. Ferre, R. Aracil, and M. Sanchez-Uran. Stereoscopic human in- terfaces. IEEE Robotics & Automation Magazine, 15(4):5057, Dec.

2008.

[80] P. Aitola, I. Airo, S. Kaukinen, and P. Ylitalo. Comparison of n2o and co2 pneumoperitoneums during laparoscopic cholecystectomy with special reference to postoperative pain. Surg Laparosc Endosc, 8(2):140

144, Apr 1998.

[81] D. S. Grant, C. I. Bartram, and C. W. Heron. A preliminary study of the possible benets of using carbon dioxide insuation during double- contrast barium enema. Br J Radiol, 59(698):190191, Feb 1986.

[82] M. Bergström, P. Swain, and P. Park. Measurements of intraperitoneal pressure and the development of a feedback control valve for regula- ting pressure during exible transgastric surgery (notes). Gastrointest Endosc, 66(1):174178, Jul 2007.

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