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Erschienen in: Indian Journal of Surgery 4/2022

28.09.2021 | Review Article

Laparoscopic Lens Defogging: a Review of Methods to Maintain a Clear Operating Field

verfasst von: Ravinder Kumar, Shaan Jallu, Kritika Pasricha, Bijit Basumatary, Bhanu Pratap Singh Parmar, Ashish Kumar Sahani

Erschienen in: Indian Journal of Surgery | Ausgabe 4/2022

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Abstract

One of the fundamental principles of a successful laparoscopic procedure is a clear operating field. The laparoscopic lens must be able to visualize the internal organs as clearly as possible. However, fogging on the laparoscopic lens due to temperature gradient poses an obstruction in the field of view for surgeons. Many techniques like insufflation, irrigation system, antifogging solutions, and heat source have been employed in order to avoid the fogging of these lenses, but all these methods are partially effective, require constant supervision, and are time-consuming. Therefore, antifogging ability combined with high transparency is imperative for the fabrication of such lenses. In this review, different methods of defogging of laparoscopic lenses are discussed. However, in order to overcome the shortcomings of these methods, another method of defogging laparoscopic lens using superhydrophobic coatings is presented in this review. It discusses different types of organic, inorganic, and hybrid materials for fabrication of superhydrophobic glass substrates. These materials include silica-based nanoparticles, metallic oxides, and polymers. While silica-based particles have shown immense promise as potential candidates for transparent superhydrophobic materials because of development of high contact angles, polymers are also being widely employed for this purpose due to various advantages that they present.
Literatur
1.
Zurück zum Zitat Kreeft D, Arkenbout EA, Henselmans PWJ, van Furth WR, Breedveld P (2017) Review of techniques to achieve optical surface cleanliness and their potential application to surgical endoscopes. Surg Innov 24(5):509–527PubMedPubMedCentralCrossRef Kreeft D, Arkenbout EA, Henselmans PWJ, van Furth WR, Breedveld P (2017) Review of techniques to achieve optical surface cleanliness and their potential application to surgical endoscopes. Surg Innov 24(5):509–527PubMedPubMedCentralCrossRef
2.
Zurück zum Zitat Brown JA, Inocencio MD, Sundaram CP (2008) Use of a warming bath to prevent lens fogging during laparoscopy. J Endourol 22(11):2413–2414PubMedCrossRef Brown JA, Inocencio MD, Sundaram CP (2008) Use of a warming bath to prevent lens fogging during laparoscopy. J Endourol 22(11):2413–2414PubMedCrossRef
3.
Zurück zum Zitat Weld KJ et al (2007) Analysis of surgical smoke produced by various energy-based instruments and effect on laparoscopic visibility. J Endourol 21(3):347–351PubMedCrossRef Weld KJ et al (2007) Analysis of surgical smoke produced by various energy-based instruments and effect on laparoscopic visibility. J Endourol 21(3):347–351PubMedCrossRef
4.
Zurück zum Zitat Lawrentschuk N, Fleshner NE, Bolton DM (2010) Laparoscopic lens fogging: a review of etiology and methods to maintain a clear visual field. J Endourol 24(6):905–913PubMedCrossRef Lawrentschuk N, Fleshner NE, Bolton DM (2010) Laparoscopic lens fogging: a review of etiology and methods to maintain a clear visual field. J Endourol 24(6):905–913PubMedCrossRef
5.
Zurück zum Zitat Runia AJ, Zengerink JF, Mannaerts GHH (2009) Easy cleaning of the scope’s lens in a syringe to prevent condensation during laparoscopic surgery. Surg Endosc 23(12):2849–2850PubMedCrossRef Runia AJ, Zengerink JF, Mannaerts GHH (2009) Easy cleaning of the scope’s lens in a syringe to prevent condensation during laparoscopic surgery. Surg Endosc 23(12):2849–2850PubMedCrossRef
6.
Zurück zum Zitat Sajid MS, Mallick AS, Rimpel J, Bokari SA, Cheek E, Baig MK (2008) “Effect of heated and humidified carbon dioxide on patients after laparoscopic procedures: a meta-analysis,” Surgical Laparoscopy, Endoscopy and Percutaneous Techniques, vol. 18, no. 6. Surg Laparosc Endosc Percutan Tech, pp. 539–546 Sajid MS, Mallick AS, Rimpel J, Bokari SA, Cheek E, Baig MK (2008) “Effect of heated and humidified carbon dioxide on patients after laparoscopic procedures: a meta-analysis,” Surgical Laparoscopy, Endoscopy and Percutaneous Techniques, vol. 18, no. 6. Surg Laparosc Endosc Percutan Tech, pp. 539–546
7.
Zurück zum Zitat Calhoun JT, Redan JA (2014) Elimination of laparoscopic lens fogging using directional flow of CO2. J Soc Laparoendosc Surg 18(1):55–61CrossRef Calhoun JT, Redan JA (2014) Elimination of laparoscopic lens fogging using directional flow of CO2. J Soc Laparoendosc Surg 18(1):55–61CrossRef
8.
Zurück zum Zitat Sutton E et al (2010) Gaze disruptions experienced by the laparoscopic operating surgeon. Surg Endosc 24(6):1240–1244PubMedCrossRef Sutton E et al (2010) Gaze disruptions experienced by the laparoscopic operating surgeon. Surg Endosc 24(6):1240–1244PubMedCrossRef
9.
Zurück zum Zitat Kitano S et al (1992) A safe and simple method to maintain a clear field of vision during laparoscopic cholecystectomy. Surg Endosc 6(4):197–198PubMedCrossRef Kitano S et al (1992) A safe and simple method to maintain a clear field of vision during laparoscopic cholecystectomy. Surg Endosc 6(4):197–198PubMedCrossRef
10.
Zurück zum Zitat Binda MM (2015) Humidification during laparoscopic surgery: overview of the clinical benefits of using humidified gas during laparoscopic surgery. Arch Gynecol Obstet 292(5):955–971PubMedPubMedCentralCrossRef Binda MM (2015) Humidification during laparoscopic surgery: overview of the clinical benefits of using humidified gas during laparoscopic surgery. Arch Gynecol Obstet 292(5):955–971PubMedPubMedCentralCrossRef
11.
Zurück zum Zitat Xiu Y, Hess DW, Wong CP (2007) A novel method to prepare superhydrophobic, self-cleaning and transparent coatings for biomedical applications, Proc. -57th Electron. Components Technol. Conf 1218–1223 Xiu Y, Hess DW, Wong CP (2007) A novel method to prepare superhydrophobic, self-cleaning and transparent coatings for biomedical applications, Proc. -57th Electron. Components Technol. Conf 1218–1223
12.
Zurück zum Zitat Fresnais J, Benyahia L, Poncin-Epaillard F (2006) Dynamic (de)wetting properties of superhydrophobic plasma-treated polyethylene surfaces. Surf Interface Anal 38(3):144–149CrossRef Fresnais J, Benyahia L, Poncin-Epaillard F (2006) Dynamic (de)wetting properties of superhydrophobic plasma-treated polyethylene surfaces. Surf Interface Anal 38(3):144–149CrossRef
13.
Zurück zum Zitat Salimi E (2020) Superhydrophobic blood-compatible surfaces: state of the art. Int J Polym Mater Polym Biomater 69(6):363–372CrossRef Salimi E (2020) Superhydrophobic blood-compatible surfaces: state of the art. Int J Polym Mater Polym Biomater 69(6):363–372CrossRef
14.
Zurück zum Zitat Latthe SS et al (2019) Self – cleaning superhydrophobic coatings: potential industrial applications. Prog Org Coatings 128(August 2018):52–58CrossRef Latthe SS et al (2019) Self – cleaning superhydrophobic coatings: potential industrial applications. Prog Org Coatings 128(August 2018):52–58CrossRef
15.
Zurück zum Zitat Liravi M, Pakzad H, Moosavi A, Nouri-Borujerdi A (2020) A comprehensive review on recent advances in superhydrophobic surfaces and their applications for drag reduction. Prog Org Coatings 140(August 2019):105537CrossRef Liravi M, Pakzad H, Moosavi A, Nouri-Borujerdi A (2020) A comprehensive review on recent advances in superhydrophobic surfaces and their applications for drag reduction. Prog Org Coatings 140(August 2019):105537CrossRef
16.
Zurück zum Zitat Yin L, Wang Y, Ding J, Wang Q, Chen Q (2012) Water condensation on superhydrophobic aluminum surfaces with different low-surface-energy coatings. Appl Surf Sci 258(8):4063–4068CrossRef Yin L, Wang Y, Ding J, Wang Q, Chen Q (2012) Water condensation on superhydrophobic aluminum surfaces with different low-surface-energy coatings. Appl Surf Sci 258(8):4063–4068CrossRef
17.
Zurück zum Zitat Gu SY, Wang ZM, Li JB, Ren J (2010) Switchable wettability of thermo-responsive biocompatible nanofibrous films created by electrospinninga. Macromol Mater Eng 295(1):32–36CrossRef Gu SY, Wang ZM, Li JB, Ren J (2010) Switchable wettability of thermo-responsive biocompatible nanofibrous films created by electrospinninga. Macromol Mater Eng 295(1):32–36CrossRef
18.
Zurück zum Zitat Zhang L et al (2020) Bioinspired superhydrophobic surface by hierarchically colloidal assembling of microparticles and colloidal nanoparticles. Chem Eng J 394:125008CrossRef Zhang L et al (2020) Bioinspired superhydrophobic surface by hierarchically colloidal assembling of microparticles and colloidal nanoparticles. Chem Eng J 394:125008CrossRef
20.
Zurück zum Zitat Ferrari M, Ravera F, Liggieri L (2006) Preparation of a superhydrophobic surface by mixed inorganic-organic coating. Appl. Phys. Lett. 88(20):203125CrossRef Ferrari M, Ravera F, Liggieri L (2006) Preparation of a superhydrophobic surface by mixed inorganic-organic coating. Appl. Phys. Lett. 88(20):203125CrossRef
21.
Zurück zum Zitat Buxey K, Wong S, Pham M (2018) Novel technique for defogging and cleaning the laparoscope lens uring minimally invasive surgery. Hell J Surg 90(6):321–322CrossRef Buxey K, Wong S, Pham M (2018) Novel technique for defogging and cleaning the laparoscope lens uring minimally invasive surgery. Hell J Surg 90(6):321–322CrossRef
22.
Zurück zum Zitat Van Deurzen DFP, Mannaerts GHH, Jakimowicz JJ, Cuschieri A (2005) Prevention of lens condensation in laparoscopic surgery by lens heating with a thermos flask. Surg Endosc Other Interv Tech 19(2):299–300CrossRef Van Deurzen DFP, Mannaerts GHH, Jakimowicz JJ, Cuschieri A (2005) Prevention of lens condensation in laparoscopic surgery by lens heating with a thermos flask. Surg Endosc Other Interv Tech 19(2):299–300CrossRef
23.
Zurück zum Zitat Hashimoto D, Shouji M (1997) Development of a fogless scope and its analysis using infrared radiation pyrometer. Surg Endosc 11(8):805–808PubMedCrossRef Hashimoto D, Shouji M (1997) Development of a fogless scope and its analysis using infrared radiation pyrometer. Surg Endosc 11(8):805–808PubMedCrossRef
24.
Zurück zum Zitat Fayad R, Hajj-Hassan H, Hajj-Hassan M (2019) Transparent ITO-based heater for prevention of laparoscopic lens fogging. 2019 Fifth International Conference on Advances in Biomedical Engineering (ICABME), 1–4 Fayad R, Hajj-Hassan H, Hajj-Hassan M (2019) Transparent ITO-based heater for prevention of laparoscopic lens fogging. 2019 Fifth International Conference on Advances in Biomedical Engineering (ICABME), 1–4
25.
Zurück zum Zitat Nezhat C, Morozov V (2008) “A simple solution to lens fogging during robotic and laparoscopic surgery”, Journal of the Society of Laparoendoscopic Surgeons. Society of Laparoscopic & Robotic Surgeons 12(4):431 Nezhat C, Morozov V (2008) “A simple solution to lens fogging during robotic and laparoscopic surgery”, Journal of the Society of Laparoendoscopic Surgeons. Society of Laparoscopic & Robotic Surgeons 12(4):431
26.
Zurück zum Zitat Barthlott W, Neinhuis C (1997) Purity of the sacred lotus, or escape from contamination in biological surfaces. Planta 202(1):1–8CrossRef Barthlott W, Neinhuis C (1997) Purity of the sacred lotus, or escape from contamination in biological surfaces. Planta 202(1):1–8CrossRef
27.
Zurück zum Zitat Lee W, Jin MK, Yoo WC Lee JK (2004) “Nanostructuring of a polymeric substrate with well-defined nanometer-scale topography and tailored surface wettability,” Langmuir Lee W, Jin MK, Yoo WC Lee JK (2004) “Nanostructuring of a polymeric substrate with well-defined nanometer-scale topography and tailored surface wettability,” Langmuir
28.
Zurück zum Zitat Liu Y, Yao W, Yin X, Wang H, Han Z, Ren L (2016) Controlling wettability for improved corrosion inhibition on magnesium alloy as biomedical implant materials. Adv Mater Interfaces 3(8):1500723CrossRef Liu Y, Yao W, Yin X, Wang H, Han Z, Ren L (2016) Controlling wettability for improved corrosion inhibition on magnesium alloy as biomedical implant materials. Adv Mater Interfaces 3(8):1500723CrossRef
29.
Zurück zum Zitat Majumder DD, Banerjee R, Ulrichs CH, Mewis I, Goswami A (2014) “Nano-materials: science of bottom-up and top- down,” 4602 Majumder DD, Banerjee R, Ulrichs CH, Mewis I, Goswami A (2014) “Nano-materials: science of bottom-up and top- down,” 4602
30.
Zurück zum Zitat Venkateswara Rao A, Latthe SS, Nadargi DY, Hirashima H, Ganesan V (2009) Preparation of MTMS based transparent superhydrophobic silica films by sol-gel method. J. Colloid Interface Sci. 332(2):484–490PubMedCrossRef Venkateswara Rao A, Latthe SS, Nadargi DY, Hirashima H, Ganesan V (2009) Preparation of MTMS based transparent superhydrophobic silica films by sol-gel method. J. Colloid Interface Sci. 332(2):484–490PubMedCrossRef
31.
Zurück zum Zitat Yu S, Guo Z, Liu W (2015) Biomimetic transparent and superhydrophobic coatings: From nature and beyond nature. Chem Commun 51(10):1775–1794CrossRef Yu S, Guo Z, Liu W (2015) Biomimetic transparent and superhydrophobic coatings: From nature and beyond nature. Chem Commun 51(10):1775–1794CrossRef
32.
Zurück zum Zitat Khanmohammadi Chenab K, Sohrabi B, Rahmanzadeh A (2019) Superhydrophobicity: advanced biological and biomedical applications. Biomater. Sci. 7(8):3110–3137PubMedCrossRef Khanmohammadi Chenab K, Sohrabi B, Rahmanzadeh A (2019) Superhydrophobicity: advanced biological and biomedical applications. Biomater. Sci. 7(8):3110–3137PubMedCrossRef
33.
Zurück zum Zitat Guo Z, Liu W (2007) Biomimic from the superhydrophobic plant leaves in nature: binary structure and unitary structure. Plant Sci 172(6):1103–1112CrossRef Guo Z, Liu W (2007) Biomimic from the superhydrophobic plant leaves in nature: binary structure and unitary structure. Plant Sci 172(6):1103–1112CrossRef
34.
Zurück zum Zitat Bravo J, Zhai L, Wu Z, Cohen RE, Rubner MF (2007) Transparent superhydrophobic films based on silica nanoparticles. Langmuir 23(13):7293–7298PubMedCrossRef Bravo J, Zhai L, Wu Z, Cohen RE, Rubner MF (2007) Transparent superhydrophobic films based on silica nanoparticles. Langmuir 23(13):7293–7298PubMedCrossRef
35.
Zurück zum Zitat Xu QF, Wang JN, Sanderson KD (2010) Organic-inorganic composite nanocoatings with superhydrophobicity, good transparency, and thermal stability. ACS Nano 4(4):2201–2209PubMedCrossRef Xu QF, Wang JN, Sanderson KD (2010) Organic-inorganic composite nanocoatings with superhydrophobicity, good transparency, and thermal stability. ACS Nano 4(4):2201–2209PubMedCrossRef
36.
Zurück zum Zitat Lai Y et al (2012) Transparent superhydrophobic/superhydrophilic TiO 2-based coatings for self-cleaning and anti-fogging. J Mater Chem 22(15):7420–7426CrossRef Lai Y et al (2012) Transparent superhydrophobic/superhydrophilic TiO 2-based coatings for self-cleaning and anti-fogging. J Mater Chem 22(15):7420–7426CrossRef
37.
Zurück zum Zitat Sriramulu D, Reed EL, Annamalai M, Venkatesan TV, Valiyaveettil S (2016) Synthesis and characterization of superhydrophobic, self-cleaning NIR-reflective silica nanoparticles. Sci Rep 6:1–10CrossRef Sriramulu D, Reed EL, Annamalai M, Venkatesan TV, Valiyaveettil S (2016) Synthesis and characterization of superhydrophobic, self-cleaning NIR-reflective silica nanoparticles. Sci Rep 6:1–10CrossRef
38.
Zurück zum Zitat Xu L, He J (2012) Fabrication of highly transparent superhydrophobic coatings from hollow silica nanoparticles. Langmuir 28(19):7512–7518PubMedCrossRef Xu L, He J (2012) Fabrication of highly transparent superhydrophobic coatings from hollow silica nanoparticles. Langmuir 28(19):7512–7518PubMedCrossRef
39.
Zurück zum Zitat Li Y, Zhang Z, Wang M, Men X, Xue Q (2017) Environmentally safe, substrate-independent and repairable nanoporous coatings: large-scale preparation, high transparency and antifouling properties. J Mater Chem A 5(38):20277–20288CrossRef Li Y, Zhang Z, Wang M, Men X, Xue Q (2017) Environmentally safe, substrate-independent and repairable nanoporous coatings: large-scale preparation, high transparency and antifouling properties. J Mater Chem A 5(38):20277–20288CrossRef
40.
Zurück zum Zitat Mahadik SA, Kavale MS, Mukherjee SK, Rao AV (2010) Transparent superhydrophobic silica coatings on glass by sol-gel method. Appl Surf Sci 257(2):333–339CrossRef Mahadik SA, Kavale MS, Mukherjee SK, Rao AV (2010) Transparent superhydrophobic silica coatings on glass by sol-gel method. Appl Surf Sci 257(2):333–339CrossRef
41.
Zurück zum Zitat Park HK, Yoon SW, Chung WW, Min BK, Do YR (2013) Fabrication and characterization of large-scale multifunctional transparent ITO nanorod films. J Mater Chem A 1(19):5860–5867CrossRef Park HK, Yoon SW, Chung WW, Min BK, Do YR (2013) Fabrication and characterization of large-scale multifunctional transparent ITO nanorod films. J Mater Chem A 1(19):5860–5867CrossRef
42.
Zurück zum Zitat Yoon Y, Lee DW, Lee JB (2013) Fabrication of optically transparent PDMS artificial lotus leaf film using underexposed and underbaked photoresist mold. J Microelectromechanical Syst 22(5):1073–1080CrossRef Yoon Y, Lee DW, Lee JB (2013) Fabrication of optically transparent PDMS artificial lotus leaf film using underexposed and underbaked photoresist mold. J Microelectromechanical Syst 22(5):1073–1080CrossRef
43.
Zurück zum Zitat Zhang L, Xue CH, Cao M, Zhang MM, Li M, Ma JZ (2017) Highly transparent fluorine-free superhydrophobic silica nanotube coatings. Chem Eng J 320:244–252CrossRef Zhang L, Xue CH, Cao M, Zhang MM, Li M, Ma JZ (2017) Highly transparent fluorine-free superhydrophobic silica nanotube coatings. Chem Eng J 320:244–252CrossRef
44.
Zurück zum Zitat Yoo Y, You JB, Choi W, Im SG (2013) A stacked polymer film for robust superhydrophobic fabrics. Polym Chem 4(5):1664–1671CrossRef Yoo Y, You JB, Choi W, Im SG (2013) A stacked polymer film for robust superhydrophobic fabrics. Polym Chem 4(5):1664–1671CrossRef
46.
Zurück zum Zitat Di Mundo R, Palumbo F, D’Agostino R (2008) Nanotexturing of polystyrene surface in fluorocarbon plasmas: from sticky to slippery superhydrophobicity. Langmuir 24(9):5044–5051PubMedCrossRef Di Mundo R, Palumbo F, D’Agostino R (2008) Nanotexturing of polystyrene surface in fluorocarbon plasmas: from sticky to slippery superhydrophobicity. Langmuir 24(9):5044–5051PubMedCrossRef
48.
Zurück zum Zitat Teshima K, Sugimura H, Inoue Y, Takai O, Takano A (2005) Transparent ultra water-repellent poly(ethylene terephthalate) substrates fabricated by oxygen plasma treatment and subsequent hydrophobic coating. Appl Surf Sci 244(1–4):619–622CrossRef Teshima K, Sugimura H, Inoue Y, Takai O, Takano A (2005) Transparent ultra water-repellent poly(ethylene terephthalate) substrates fabricated by oxygen plasma treatment and subsequent hydrophobic coating. Appl Surf Sci 244(1–4):619–622CrossRef
49.
Zurück zum Zitat He Z et al (2011) Fabrication of a transparent superamphiphobic coating with improved stability. Soft Matter 7(14):6435–6443CrossRef He Z et al (2011) Fabrication of a transparent superamphiphobic coating with improved stability. Soft Matter 7(14):6435–6443CrossRef
50.
Zurück zum Zitat Han JT, Kim SY, Woo JS, Lee GW (2008) Transparent, conductive, and superhydrophobic films from stabilized carbon nanotube/silane sol mixture solution. Adv Mater 20(19):3724–3727CrossRef Han JT, Kim SY, Woo JS, Lee GW (2008) Transparent, conductive, and superhydrophobic films from stabilized carbon nanotube/silane sol mixture solution. Adv Mater 20(19):3724–3727CrossRef
51.
Zurück zum Zitat Shen L, Wang W, Ding H, Guo Q (2013) Flame soot stably deposited on silicone coatings possess superhydrophobic surface. Appl Surf Sci 284:651–656CrossRef Shen L, Wang W, Ding H, Guo Q (2013) Flame soot stably deposited on silicone coatings possess superhydrophobic surface. Appl Surf Sci 284:651–656CrossRef
52.
Zurück zum Zitat Jiang C, Zhang Y, Wang Q, Wang T (2013) Superhydrophobic polyurethane and silica nanoparticles coating with high transparency and fluorescence. J Appl Polym Sci 129(5):2959–2965CrossRef Jiang C, Zhang Y, Wang Q, Wang T (2013) Superhydrophobic polyurethane and silica nanoparticles coating with high transparency and fluorescence. J Appl Polym Sci 129(5):2959–2965CrossRef
53.
Zurück zum Zitat Iqbal R, Majhy B, Sen AK (2017) Facile fabrication and characterization of a PDMS-derived candle soot coated stable biocompatible superhydrophobic and superhemophobic surface. ACS Appl Mater Interfaces 9(36):31170–31180PubMedCrossRef Iqbal R, Majhy B, Sen AK (2017) Facile fabrication and characterization of a PDMS-derived candle soot coated stable biocompatible superhydrophobic and superhemophobic surface. ACS Appl Mater Interfaces 9(36):31170–31180PubMedCrossRef
54.
Zurück zum Zitat Yang L et al (2020) Manufacturing of anti-fogging super-hydrophilic microstructures on glass by nanosecond laser. J Manuf Process 59:557–565CrossRef Yang L et al (2020) Manufacturing of anti-fogging super-hydrophilic microstructures on glass by nanosecond laser. J Manuf Process 59:557–565CrossRef
Metadaten
Titel
Laparoscopic Lens Defogging: a Review of Methods to Maintain a Clear Operating Field
verfasst von
Ravinder Kumar
Shaan Jallu
Kritika Pasricha
Bijit Basumatary
Bhanu Pratap Singh Parmar
Ashish Kumar Sahani
Publikationsdatum
28.09.2021
Verlag
Springer India
Erschienen in
Indian Journal of Surgery / Ausgabe 4/2022
Print ISSN: 0972-2068
Elektronische ISSN: 0973-9793
DOI
https://doi.org/10.1007/s12262-021-03126-0

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