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Erschienen in: Lasers in Medical Science 2/2010

01.03.2010 | Original Article

Bone healing of the sheep tibia shaft after carbon dioxide laser osteotomy: histological results

verfasst von: Johannes J. Kuttenberger, Alessa Waibel, Stefan Stübinger, Martin Werner, Manfred Klasing, Mikhail Ivanenko, Peter Hering, Brigitte von Rechenberg, Robert Sader, Hans-Florian Zeilhofer

Erschienen in: Lasers in Medical Science | Ausgabe 2/2010

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Abstract

The aim of the study was to compare the histological results after complete osteotomies of the sheep tibia using either the prototype carbon dioxide (CO2) laser osteotome ‘OsteoLAS’ (n = 12) or an oscillating saw (n = 12). The laser parameters were as follows: wavelength 10.6 µm; energy of laser pulses 75–85 mJ; pulse duration 80 μs; pulse repetition rate 200 Hz; spot diameter 460 μm (1/e2 level); radiant exposure 45–51 J/cm2; peak irradiance 0.56–0.64 MW/cm2. Both groups were divided into two subgroups (n = 6), and the animals were killed after 4 weeks or 12 weeks, respectively. Light and fluorescence microscopy with semiquantitative analysis and histomorphometry were performed to compare bone healing. Charring-free laser osteotomies were possible up to a depth of 20 mm with the short-pulsed CO2 laser. The laser, however, required a significantly longer time to perform, and a wedge-shaped gap was present on the cis-cortex. After 4 weeks the osteotomy gaps were almost unchanged in both groups and filled with connective tissue. After 12 weeks the gaps were filled with newly formed bone in both groups. Primary gap healing was predominant in the laser group and longitudinal cortical remodelling in the control group. On a cellular level, no fundamental differences were observed for early and late stages of bone healing. Further research has to be focussed on improving the CO2 laser ostetome in order to reduce the long duration of the laser osteotomy and the necessity of creating a wedge-shaped cut in thick bones.
Literatur
1.
Zurück zum Zitat Ivanenko M, Sader R, Afilal S, Werner M, Hartstock M, von Hänisch C, Milz S, Erhardt W, Zeilhofer HF, Hering P (2005) In-vivo animal trials with a scanning CO2 laser osteotome. Lasers Surg Med 37:144–148CrossRefPubMed Ivanenko M, Sader R, Afilal S, Werner M, Hartstock M, von Hänisch C, Milz S, Erhardt W, Zeilhofer HF, Hering P (2005) In-vivo animal trials with a scanning CO2 laser osteotome. Lasers Surg Med 37:144–148CrossRefPubMed
2.
Zurück zum Zitat Ivanenko M, Fahimi-Weber S, Mitra T, Wierich W, Hering P (2002) Bone tissue ablation with sub-μs pulses of a Q-switch CO2 laser: histological examination of thermal side effects. Lasers Med Sci 17:258–264CrossRefPubMed Ivanenko M, Fahimi-Weber S, Mitra T, Wierich W, Hering P (2002) Bone tissue ablation with sub-μs pulses of a Q-switch CO2 laser: histological examination of thermal side effects. Lasers Med Sci 17:258–264CrossRefPubMed
3.
Zurück zum Zitat Papadaki M, Doukas A, Farinelli WA, Kaban L, Troulis M (2007) Vertical ramus osteotomy with Er:YAG laser: a feasibility study. Int J Oral Maxillofac Surg 36:1193–1197CrossRefPubMed Papadaki M, Doukas A, Farinelli WA, Kaban L, Troulis M (2007) Vertical ramus osteotomy with Er:YAG laser: a feasibility study. Int J Oral Maxillofac Surg 36:1193–1197CrossRefPubMed
4.
Zurück zum Zitat Clayman L, Fuller T, Beckman H (1978) Healing of continuous-wave and rapid superpulsed carbon dioxide laser-induced bone defects. J Oral Surg 36:932–937PubMed Clayman L, Fuller T, Beckman H (1978) Healing of continuous-wave and rapid superpulsed carbon dioxide laser-induced bone defects. J Oral Surg 36:932–937PubMed
5.
Zurück zum Zitat Small IA, Osborn TP, Fuller T, Hussain M, Kobernick S (1979) Observations of carbon dioxide laser and bone bur in the osteotomy of the rabbit tibia. J Oral Surg 37:159–166PubMed Small IA, Osborn TP, Fuller T, Hussain M, Kobernick S (1979) Observations of carbon dioxide laser and bone bur in the osteotomy of the rabbit tibia. J Oral Surg 37:159–166PubMed
6.
Zurück zum Zitat Horch HH, Keiditsch E (1980) Morphologische Befunde über die Gewebsschädigung und Knochenregeneration nach Laser-Osteomie. Dtsch Zahnärztl Z 35:22–24PubMed Horch HH, Keiditsch E (1980) Morphologische Befunde über die Gewebsschädigung und Knochenregeneration nach Laser-Osteomie. Dtsch Zahnärztl Z 35:22–24PubMed
7.
Zurück zum Zitat Gertzbein SD, deDemeter D, Cruickshank B, Kapasouri A (1981) The effect of laser osteotomy on bone healing. Lasers Surg Med 1:361–373CrossRefPubMed Gertzbein SD, deDemeter D, Cruickshank B, Kapasouri A (1981) The effect of laser osteotomy on bone healing. Lasers Surg Med 1:361–373CrossRefPubMed
8.
Zurück zum Zitat Horch HH (1983) Laser-Osteotomie und Anwendungsmöglichkeiten des Lasers in der oralen Weichteilchirurgie. Quintessenz, Berlin, pp 45–101 Horch HH (1983) Laser-Osteotomie und Anwendungsmöglichkeiten des Lasers in der oralen Weichteilchirurgie. Quintessenz, Berlin, pp 45–101
9.
Zurück zum Zitat Biyikli S, Modest MF (1987) Energy requirements for osteotomy of femora and tibiae with a moving cw CO2-laser. Lasers Surg Med 7:512–519CrossRefPubMed Biyikli S, Modest MF (1987) Energy requirements for osteotomy of femora and tibiae with a moving cw CO2-laser. Lasers Surg Med 7:512–519CrossRefPubMed
10.
Zurück zum Zitat Kuttenberger JJ, Stübinger S, Waibel A, Werner M, Klasing M, Ivanenko M, Hering P, von Rechenberg B, Sader R, Zeilhofer HF (2008) Computer-guided CO2 laser osteotomy of the sheep tibia: technical prerequisites and first results. Photomed Laser Surg 26:129–136CrossRefPubMed Kuttenberger JJ, Stübinger S, Waibel A, Werner M, Klasing M, Ivanenko M, Hering P, von Rechenberg B, Sader R, Zeilhofer HF (2008) Computer-guided CO2 laser osteotomy of the sheep tibia: technical prerequisites and first results. Photomed Laser Surg 26:129–136CrossRefPubMed
11.
Zurück zum Zitat Allen GW, Adrian JC (1981) Effects of carbon dioxide laser radiation on bone: an initial report. Mil Med 146:120–123PubMed Allen GW, Adrian JC (1981) Effects of carbon dioxide laser radiation on bone: an initial report. Mil Med 146:120–123PubMed
12.
Zurück zum Zitat Clauser C (1986) Comparison of depth and profile of osteotomies performed by rapid superpulsed and continuous-wave CO2-laser beams at high power output. J Oral Maxillofac Surg 44:425–430PubMedCrossRef Clauser C (1986) Comparison of depth and profile of osteotomies performed by rapid superpulsed and continuous-wave CO2-laser beams at high power output. J Oral Maxillofac Surg 44:425–430PubMedCrossRef
13.
Zurück zum Zitat Clauser C, Clayman L (1989) Effects of exposure time and pulse parameters on CO2-laser osteotomies. Lasers Surg Med 9:22–29CrossRefPubMed Clauser C, Clayman L (1989) Effects of exposure time and pulse parameters on CO2-laser osteotomies. Lasers Surg Med 9:22–29CrossRefPubMed
14.
Zurück zum Zitat Rayan GM, Pitha JV, Edwards JS, Everett RB (1991) Effects of CO2-laser beam on cortical bone. Lasers Surg Med 11:58–61CrossRefPubMed Rayan GM, Pitha JV, Edwards JS, Everett RB (1991) Effects of CO2-laser beam on cortical bone. Lasers Surg Med 11:58–61CrossRefPubMed
15.
Zurück zum Zitat Rayan GM, Stanfield DT, Cahill S, Kosanke SD, Kopta JA (1992) Effects of rapid pulsed CO2-laser beam on cortical bone in vivo. Lasers Surg Med 12:615–620CrossRefPubMed Rayan GM, Stanfield DT, Cahill S, Kosanke SD, Kopta JA (1992) Effects of rapid pulsed CO2-laser beam on cortical bone in vivo. Lasers Surg Med 12:615–620CrossRefPubMed
16.
Zurück zum Zitat Dinkelaker F, Scholz C, Grothues-Sprok M, Rahmanzadeh R, Müller G (1989) Fluoreszenzmikroskopische Befunde nach CO2-Laserosteotomie an der Schaftibia. Hefte Unfallheilkd 207:459–461 Dinkelaker F, Scholz C, Grothues-Sprok M, Rahmanzadeh R, Müller G (1989) Fluoreszenzmikroskopische Befunde nach CO2-Laserosteotomie an der Schaftibia. Hefte Unfallheilkd 207:459–461
17.
Zurück zum Zitat Callahan DJ (1990) Osseous healing after CO2 laser osteotomy. Foot Ankle 11:146–151PubMed Callahan DJ (1990) Osseous healing after CO2 laser osteotomy. Foot Ankle 11:146–151PubMed
18.
Zurück zum Zitat Keller U, Hibst R, Mohr W (1991) Tierexperimentelle Untersuchungen zur Laserosteotomie mit dem Erbium:YAG-laser. Dtsch Z Mund Kiefer Gesichts Chir 15:197–199 Keller U, Hibst R, Mohr W (1991) Tierexperimentelle Untersuchungen zur Laserosteotomie mit dem Erbium:YAG-laser. Dtsch Z Mund Kiefer Gesichts Chir 15:197–199
19.
Zurück zum Zitat Friesen LR, Cobb CM, Rapley JW, Forgas-Brockman L, Spencer P (1999) Laser irradiation of bone: II. Healing response following treatment by CO2 and Nd:YAG lasers. J Periodontol 70:75–83CrossRefPubMed Friesen LR, Cobb CM, Rapley JW, Forgas-Brockman L, Spencer P (1999) Laser irradiation of bone: II. Healing response following treatment by CO2 and Nd:YAG lasers. J Periodontol 70:75–83CrossRefPubMed
20.
Zurück zum Zitat Siebert WE (1992) Laseranwendung in der Orthopädie. Orthopade 21:273–288PubMed Siebert WE (1992) Laseranwendung in der Orthopädie. Orthopade 21:273–288PubMed
21.
Zurück zum Zitat Siebert W (1993) Osteotomie mit experimentellen Lasersystemen. Fortschr Kiefer Gesichtschir 38:149–151PubMed Siebert W (1993) Osteotomie mit experimentellen Lasersystemen. Fortschr Kiefer Gesichtschir 38:149–151PubMed
22.
Zurück zum Zitat Siebert W (1996) Laser-Osteotomie mit experimentellen Lasersystemen. Verlag Dr. Kovač, Hamburg Siebert W (1996) Laser-Osteotomie mit experimentellen Lasersystemen. Verlag Dr. Kovač, Hamburg
23.
Zurück zum Zitat Siebert WE, Stanke M (2001) Bone healing after erbium:YAG laser osteotomy of sheep tibia. In: Gerber BE, Knight M, Siebert WE (eds) Lasers in the musculoskeletal system. Springer, Berlin, pp 75–80 Siebert WE, Stanke M (2001) Bone healing after erbium:YAG laser osteotomy of sheep tibia. In: Gerber BE, Knight M, Siebert WE (eds) Lasers in the musculoskeletal system. Springer, Berlin, pp 75–80
24.
Zurück zum Zitat McDavid VG, Cobb CM, Rapley JW, Glaros AG, Spencer P (2001) Long-term healing following treatment by CO2 and Nd:YAG lasers. J Periodontol 72:174–182CrossRefPubMed McDavid VG, Cobb CM, Rapley JW, Glaros AG, Spencer P (2001) Long-term healing following treatment by CO2 and Nd:YAG lasers. J Periodontol 72:174–182CrossRefPubMed
25.
Zurück zum Zitat Frentzen M, Götz W, Ivanenko M, Afilal S, Werner M, Hering P (2003) Osteotomy with 80-μs CO2 laser pulses—histological results. Lasers Med Sci 18:119–124CrossRefPubMed Frentzen M, Götz W, Ivanenko M, Afilal S, Werner M, Hering P (2003) Osteotomy with 80-μs CO2 laser pulses—histological results. Lasers Med Sci 18:119–124CrossRefPubMed
26.
Zurück zum Zitat Leutenegger CM, von Rechenberg B, Zlinszky K, Mislin C, Akens MK, Auer JA, Lutz H (1999) Quantitative real time PCR for equine cytokine mRNA in nondecalcified bone tissue embedded in methylmethacrylate. Calcif Tissue Int 65:378–383CrossRefPubMed Leutenegger CM, von Rechenberg B, Zlinszky K, Mislin C, Akens MK, Auer JA, Lutz H (1999) Quantitative real time PCR for equine cytokine mRNA in nondecalcified bone tissue embedded in methylmethacrylate. Calcif Tissue Int 65:378–383CrossRefPubMed
27.
Zurück zum Zitat Nunamaker DM, Perren SM (1977) Cortical bone healing: effects of implant size and mechanical application on bone healing with full weight bearing. Trans Orthop Res Soc 2:252 Nunamaker DM, Perren SM (1977) Cortical bone healing: effects of implant size and mechanical application on bone healing with full weight bearing. Trans Orthop Res Soc 2:252
28.
Zurück zum Zitat Schenk RK, Willenegger HR (1977) Histology of primary bone healing: modifications and limits of recovery of gaps in relation to extent of the defect. Unfallheilkunde 80:155–160PubMed Schenk RK, Willenegger HR (1977) Histology of primary bone healing: modifications and limits of recovery of gaps in relation to extent of the defect. Unfallheilkunde 80:155–160PubMed
29.
Zurück zum Zitat Perren SM (2002) Evolution of the internal fixation of long bone fractures. The scientific basis of biological internal fixation: choosing a new balance between stability and biology. J Bone Joint Surg Br 84:1093–1110CrossRef Perren SM (2002) Evolution of the internal fixation of long bone fractures. The scientific basis of biological internal fixation: choosing a new balance between stability and biology. J Bone Joint Surg Br 84:1093–1110CrossRef
30.
Zurück zum Zitat Schenk RK, Willenegger H (1963) Zum histologischen Bild der sogenannten Primärheilung der Knochenkompakta nach experimentellen Osteotomien am Hund. Experientia 19:593–595CrossRefPubMed Schenk RK, Willenegger H (1963) Zum histologischen Bild der sogenannten Primärheilung der Knochenkompakta nach experimentellen Osteotomien am Hund. Experientia 19:593–595CrossRefPubMed
31.
Zurück zum Zitat Ivanenko MM, Eyrich G, Bruder E, Hering P (2000) In vitro incision of bone tissue with a Q-switch CO2 laser. Histological examination. Lasers Life Sci 9:1–9 Ivanenko MM, Eyrich G, Bruder E, Hering P (2000) In vitro incision of bone tissue with a Q-switch CO2 laser. Histological examination. Lasers Life Sci 9:1–9
32.
Zurück zum Zitat Brendemühl A, Werner M, Ivanenko M, Hering P, Buzug TM (2005) Temperature measurements with an IR camera during drilling and cutting of bone with a pulsed CO2 laser. Biomed Techn 50(Suppl Vol 1):1264–1265 Brendemühl A, Werner M, Ivanenko M, Hering P, Buzug TM (2005) Temperature measurements with an IR camera during drilling and cutting of bone with a pulsed CO2 laser. Biomed Techn 50(Suppl Vol 1):1264–1265
33.
Zurück zum Zitat Horch HH (1984) Zum aktuellen Stand der Laser-Osteotomie. Orthopade 13:125–132PubMed Horch HH (1984) Zum aktuellen Stand der Laser-Osteotomie. Orthopade 13:125–132PubMed
34.
Zurück zum Zitat von Hänisch C (2004) Osteogenese nach Laserosteotomie mit einem CO2-Laser im Vergleich zur Osteotomie mit konventioneller Sägetechnik—eine tierexperimentelle Studie. Dissertation, Ludwig-Maximilians-Universität, Munich von Hänisch C (2004) Osteogenese nach Laserosteotomie mit einem CO2-Laser im Vergleich zur Osteotomie mit konventioneller Sägetechnik—eine tierexperimentelle Studie. Dissertation, Ludwig-Maximilians-Universität, Munich
35.
Zurück zum Zitat Nunamaker DM (1998) Experimental models of fracture repair. Clin Orthop 355 Suppl:S56–S65PubMed Nunamaker DM (1998) Experimental models of fracture repair. Clin Orthop 355 Suppl:S56–S65PubMed
36.
Zurück zum Zitat Nelson JS, Orenstein A, Liaw LHL, Berns MW (1989) Mid-infrared Erbium:YAG laser ablation of bone: the effect of laser osteotomy on bone healing. Lasers Surg Med 9:362–374CrossRefPubMed Nelson JS, Orenstein A, Liaw LHL, Berns MW (1989) Mid-infrared Erbium:YAG laser ablation of bone: the effect of laser osteotomy on bone healing. Lasers Surg Med 9:362–374CrossRefPubMed
37.
Zurück zum Zitat Walsh JT, Flotte TJ, Deutsch TF (1989) Er:YAG laser ablation of tissue: effect of pulse duration and tissue type on thermal damage. Lasers Surg Med 9:314–326CrossRefPubMed Walsh JT, Flotte TJ, Deutsch TF (1989) Er:YAG laser ablation of tissue: effect of pulse duration and tissue type on thermal damage. Lasers Surg Med 9:314–326CrossRefPubMed
38.
Zurück zum Zitat Sasaki KM, Aoki A, Ichinose S, Ishikawa I (2002) Ultrastructural analysis of bone tissue irradiated by Er:YAG Laser. Lasers Surg Med 31:322–332CrossRefPubMed Sasaki KM, Aoki A, Ichinose S, Ishikawa I (2002) Ultrastructural analysis of bone tissue irradiated by Er:YAG Laser. Lasers Surg Med 31:322–332CrossRefPubMed
39.
Zurück zum Zitat Pourzarandian A, Watanabe H, Aoki A, Ichinose S, Sasaki KM, Nitta H, Ishikawa I (2004) Histological and TEM examination of early stages of bone healing after Er:YAG laser irradiation. Photomed Laser Surg 22:342–350CrossRefPubMed Pourzarandian A, Watanabe H, Aoki A, Ichinose S, Sasaki KM, Nitta H, Ishikawa I (2004) Histological and TEM examination of early stages of bone healing after Er:YAG laser irradiation. Photomed Laser Surg 22:342–350CrossRefPubMed
40.
Zurück zum Zitat Rupprecht S, Tangermann-Gerk K, Wiltfang J, Neukam FW, Schlegel A (2004) Sensor-based ablation for tissue specific cutting: an experimental study. Lasers Med Sci 19:81–88CrossRefPubMed Rupprecht S, Tangermann-Gerk K, Wiltfang J, Neukam FW, Schlegel A (2004) Sensor-based ablation for tissue specific cutting: an experimental study. Lasers Med Sci 19:81–88CrossRefPubMed
Metadaten
Titel
Bone healing of the sheep tibia shaft after carbon dioxide laser osteotomy: histological results
verfasst von
Johannes J. Kuttenberger
Alessa Waibel
Stefan Stübinger
Martin Werner
Manfred Klasing
Mikhail Ivanenko
Peter Hering
Brigitte von Rechenberg
Robert Sader
Hans-Florian Zeilhofer
Publikationsdatum
01.03.2010
Verlag
Springer-Verlag
Erschienen in
Lasers in Medical Science / Ausgabe 2/2010
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-009-0714-z

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