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Published in: Knee Surgery, Sports Traumatology, Arthroscopy 12/2012

01-12-2012 | Shoulder

Superiority of bridging techniques with medial fixation on initial strength

Authors: Werner Anderl, Philipp R. Heuberer, Brenda Laky, Bernhard Kriegleder, Roland Reihsner, Josef Eberhardsteiner

Published in: Knee Surgery, Sports Traumatology, Arthroscopy | Issue 12/2012

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Abstract

Purpose

The purpose of our study was to evaluate the initial fixation strength of bridging techniques compared to other suture techniques for rotator cuff repair using a biomechanical animal model, which incorporated pretesting of intact tendons.

Methods

Seventy-six fresh bovine shoulders were used for testing seven suture configurations including simple suture (SS), mattress suture (MS), Mason-Allen (MA), modified double row (mDR), SpeedBridge (SpB), SpeedBridge with medial fixation (mSpB), and double-mattress SutureBridge (dmSuB) techniques. Cyclic loading was performed with all intact bone-tendon complex before (pretest) and after repair of the tendon (main test) at the level of 10 and 180 N at 100 Hz with displacement-controlled ramps of ±33 mm/s. The pretest was stopped after 200 cycles. For the main test, the loading scheme was continued for a maximum of 500 cycles or until failure.

Results

The mean elongation of all 76 intact tendons measured at the pretest was 3.8 ± 0.6 mm (2.4–5.4 mm). No differences of gap formations at the 1st cycle were detected between SS, MS, MA, and mDR. SpB showed significant higher gap formations compared to all other suture techniques (p = 0.001). No significant differences were detected between mSpB and dmSuB, whereas both techniques were significant different when compared to the other groups (p < 0.05).

Conclusions

In this study, results showed that bridging techniques with medial fixations have superior initial repair strength compared to other suture techniques. Knowledge of initial fixation strength of rotator cuff repair techniques may be of informative value to the surgeon.
Literature
1.
go back to reference Anderl W, Reihsner R, Heuberer P, Kriegleder B, Eberhardsteiner J (2011) Comparison of the stability of different arthroscopic tendon fixation techniques in dynamic tests. Strain 47:421–429 Anderl W, Reihsner R, Heuberer P, Kriegleder B, Eberhardsteiner J (2011) Comparison of the stability of different arthroscopic tendon fixation techniques in dynamic tests. Strain 47:421–429
2.
go back to reference Bishop J, Klepps S, Lo I, Bird J, Gladstone J, Flatow E (2006) Cuff integrity after arthroscopic versus open rotator cuff repair: a prospective study. J Should Elbow Surg 15(3):290–299CrossRef Bishop J, Klepps S, Lo I, Bird J, Gladstone J, Flatow E (2006) Cuff integrity after arthroscopic versus open rotator cuff repair: a prospective study. J Should Elbow Surg 15(3):290–299CrossRef
3.
go back to reference Burkhart SS, Adams CR, Schoolfield JD (2009) A biomechanical comparison of 2 techniques of footprint reconstruction for rotator cuff repair: the SwiveLock-FiberChain construct versus standard double-row repair. Arthroscopy 25(3):274–281PubMedCrossRef Burkhart SS, Adams CR, Schoolfield JD (2009) A biomechanical comparison of 2 techniques of footprint reconstruction for rotator cuff repair: the SwiveLock-FiberChain construct versus standard double-row repair. Arthroscopy 25(3):274–281PubMedCrossRef
4.
go back to reference Burkhart SS, Diaz Pagan JL, Wirth MA, Athanasiou KA (1997) Cyclic loading of anchor-based rotator cuff repairs: confirmation of the tension overload phenomenon and comparison of suture anchor fixation with transosseous fixation. Arthroscopy 13(6):720–724PubMedCrossRef Burkhart SS, Diaz Pagan JL, Wirth MA, Athanasiou KA (1997) Cyclic loading of anchor-based rotator cuff repairs: confirmation of the tension overload phenomenon and comparison of suture anchor fixation with transosseous fixation. Arthroscopy 13(6):720–724PubMedCrossRef
5.
go back to reference Burkhart SS, Johnson TC, Wirth MA, Athanasiou KA (1997) Cyclic loading of transosseous rotator cuff repairs: tension overload as a possible cause of failure. Arthroscopy 13(2):172–176PubMedCrossRef Burkhart SS, Johnson TC, Wirth MA, Athanasiou KA (1997) Cyclic loading of transosseous rotator cuff repairs: tension overload as a possible cause of failure. Arthroscopy 13(2):172–176PubMedCrossRef
6.
go back to reference Busfield BT, Glousman RE, McGarry MH, Tibone JE, Lee TQ (2008) A biomechanical comparison of 2 technical variations of double-row rotator cuff fixation: the importance of medial row knots. Am J Sports Med 36(5):901–906PubMedCrossRef Busfield BT, Glousman RE, McGarry MH, Tibone JE, Lee TQ (2008) A biomechanical comparison of 2 technical variations of double-row rotator cuff fixation: the importance of medial row knots. Am J Sports Med 36(5):901–906PubMedCrossRef
7.
go back to reference Charousset C, Grimberg J, Duranthon LD, Bellaiche L, Petrover D (2007) Can a double-row anchorage technique improve tendon healing in arthroscopic rotator cuff repair?: a prospective, nonrandomized, comparative study of double-row and single-row anchorage techniques with computed tomographic arthrography tendon healing assessment. Am J Sports Med 35(8):1247–1253PubMedCrossRef Charousset C, Grimberg J, Duranthon LD, Bellaiche L, Petrover D (2007) Can a double-row anchorage technique improve tendon healing in arthroscopic rotator cuff repair?: a prospective, nonrandomized, comparative study of double-row and single-row anchorage techniques with computed tomographic arthrography tendon healing assessment. Am J Sports Med 35(8):1247–1253PubMedCrossRef
8.
go back to reference Christoforetti JJ, Krupp RJ, Singleton SB, Kissenberth MJ, Cook C, Hawkins RJ (2011) Arthroscopic suture bridge transosseus equivalent fixation of rotator cuff tendon preserves intratendinous blood flow at the time of initial fixation. J Should Elbow Surg doi:10.1016/j.jse.2011.02.012 Christoforetti JJ, Krupp RJ, Singleton SB, Kissenberth MJ, Cook C, Hawkins RJ (2011) Arthroscopic suture bridge transosseus equivalent fixation of rotator cuff tendon preserves intratendinous blood flow at the time of initial fixation. J Should Elbow Surg doi:10.​1016/​j.​jse.​2011.​02.​012
9.
go back to reference Cole BJ, ElAttrache NS, Anbari A (2007) Arthroscopic rotator cuff repairs: an anatomic and biomechanical rationale for different suture-anchor repair configurations. Arthroscopy 23(6):662–669PubMedCrossRef Cole BJ, ElAttrache NS, Anbari A (2007) Arthroscopic rotator cuff repairs: an anatomic and biomechanical rationale for different suture-anchor repair configurations. Arthroscopy 23(6):662–669PubMedCrossRef
10.
go back to reference Craft DV, Moseley JB, Cawley PW, Noble PC (1996) Fixation strength of rotator cuff repairs with suture anchors and the transosseous suture technique. J Should Elbow Surg 5(1):32–40CrossRef Craft DV, Moseley JB, Cawley PW, Noble PC (1996) Fixation strength of rotator cuff repairs with suture anchors and the transosseous suture technique. J Should Elbow Surg 5(1):32–40CrossRef
11.
go back to reference De Carli A, Vadala A, Monaco E, Labianca L, Zanzotto E, Ferretti A (2005) Effect of cyclic loading on new polyblend suture coupled with different anchors. Am J Sports Med 33(2):214–219PubMedCrossRef De Carli A, Vadala A, Monaco E, Labianca L, Zanzotto E, Ferretti A (2005) Effect of cyclic loading on new polyblend suture coupled with different anchors. Am J Sports Med 33(2):214–219PubMedCrossRef
12.
go back to reference Franceschi F, Ruzzini L, Longo UG, Martina FM, Zobel BB, Maffulli N, Denaro V (2007) Equivalent clinical results of arthroscopic single-row and double-row suture anchor repair for rotator cuff tears: a randomized controlled trial. Am J Sports Med 35(8):1254–1260PubMedCrossRef Franceschi F, Ruzzini L, Longo UG, Martina FM, Zobel BB, Maffulli N, Denaro V (2007) Equivalent clinical results of arthroscopic single-row and double-row suture anchor repair for rotator cuff tears: a randomized controlled trial. Am J Sports Med 35(8):1254–1260PubMedCrossRef
13.
go back to reference Fung YC (1984) Biomechanics: mechanical properties of living tissues. Springer, New York Fung YC (1984) Biomechanics: mechanical properties of living tissues. Springer, New York
14.
go back to reference Galatz LM, Ball CM, Teefey SA, Middleton WD, Yamaguchi K (2004) The outcome and repair integrity of completely arthroscopically repaired large and massive rotator cuff tears. J Bone Jt Surg Am 86-A(2):219–224 Galatz LM, Ball CM, Teefey SA, Middleton WD, Yamaguchi K (2004) The outcome and repair integrity of completely arthroscopically repaired large and massive rotator cuff tears. J Bone Jt Surg Am 86-A(2):219–224
15.
go back to reference Grasso A, Milano G, Salvatore M, Falcone G, Deriu L, Fabbriciani C (2009) Single-row versus double-row arthroscopic rotator cuff repair: a prospective randomized clinical study. Arthroscopy 25(1):4–12PubMedCrossRef Grasso A, Milano G, Salvatore M, Falcone G, Deriu L, Fabbriciani C (2009) Single-row versus double-row arthroscopic rotator cuff repair: a prospective randomized clinical study. Arthroscopy 25(1):4–12PubMedCrossRef
17.
go back to reference Harryman DT II, Mack LA, Wang KY, Jackins SE, Richardson ML, Matsen FA III (1991) Repairs of the rotator cuff. Correlation of functional results with integrity of the cuff. J Bone Jt Surg Am 73(7):982–989 Harryman DT II, Mack LA, Wang KY, Jackins SE, Richardson ML, Matsen FA III (1991) Repairs of the rotator cuff. Correlation of functional results with integrity of the cuff. J Bone Jt Surg Am 73(7):982–989
18.
go back to reference Kim DH, Elattrache NS, Tibone JE, Jun BJ, DeLaMora SN, Kvitne RS, Lee TQ (2006) Biomechanical comparison of a single-row versus double-row suture anchor technique for rotator cuff repair. Am J Sports Med 34(3):407–414PubMedCrossRef Kim DH, Elattrache NS, Tibone JE, Jun BJ, DeLaMora SN, Kvitne RS, Lee TQ (2006) Biomechanical comparison of a single-row versus double-row suture anchor technique for rotator cuff repair. Am J Sports Med 34(3):407–414PubMedCrossRef
19.
go back to reference Klinger HM, Buchhorn GH, Heidrich G, Kahl E, Baums MH (2008) Biomechanical evaluation of rotator cuff repairs in a sheep model: suture anchors using arthroscopic Mason-Allen stitches compared with transosseous sutures using traditional modified Mason-Allen stitches. Clin Biomech (Bristol, Avon) 23(3):291–298CrossRef Klinger HM, Buchhorn GH, Heidrich G, Kahl E, Baums MH (2008) Biomechanical evaluation of rotator cuff repairs in a sheep model: suture anchors using arthroscopic Mason-Allen stitches compared with transosseous sutures using traditional modified Mason-Allen stitches. Clin Biomech (Bristol, Avon) 23(3):291–298CrossRef
20.
go back to reference Koganti AK, Adamson GJ, Gregersen CS, Pink MM, Shankwiler JA (2006) Biomechanical comparison of traditional and locked suture configurations for arthroscopic repairs of the rotator cuff. Am J Sports Med 34(11):1832–1838PubMedCrossRef Koganti AK, Adamson GJ, Gregersen CS, Pink MM, Shankwiler JA (2006) Biomechanical comparison of traditional and locked suture configurations for arthroscopic repairs of the rotator cuff. Am J Sports Med 34(11):1832–1838PubMedCrossRef
21.
go back to reference Lo IK, Burkhart SS (2003) Double-row arthroscopic rotator cuff repair: re-establishing the footprint of the rotator cuff. Arthroscopy 19(9):1035–1042PubMedCrossRef Lo IK, Burkhart SS (2003) Double-row arthroscopic rotator cuff repair: re-establishing the footprint of the rotator cuff. Arthroscopy 19(9):1035–1042PubMedCrossRef
22.
go back to reference Ma CB, Comerford L, Wilson J, Puttlitz CM (2006) Biomechanical evaluation of arthroscopic rotator cuff repairs: double-row compared with single-row fixation. J Bone Jt Surg Am 88(2):403–410CrossRef Ma CB, Comerford L, Wilson J, Puttlitz CM (2006) Biomechanical evaluation of arthroscopic rotator cuff repairs: double-row compared with single-row fixation. J Bone Jt Surg Am 88(2):403–410CrossRef
23.
go back to reference Maguire M, Goldberg J, Bokor D, Bertollo N, Pelletier MH, Harper W, Walsh WR (2011) Biomechanical evaluation of four different transosseous-equivalent/suture bridge rotator cuff repairs. Knee Surg Sports Traumatol Arthrosc 19(9):1582–1587PubMedCrossRef Maguire M, Goldberg J, Bokor D, Bertollo N, Pelletier MH, Harper W, Walsh WR (2011) Biomechanical evaluation of four different transosseous-equivalent/suture bridge rotator cuff repairs. Knee Surg Sports Traumatol Arthrosc 19(9):1582–1587PubMedCrossRef
24.
go back to reference Mahar A, Tamborlane J, Oka R, Esch J, Pedowitz RA (2007) Single-row suture anchor repair of the rotator cuff is biomechanically equivalent to double-row repair in a bovine model. Arthroscopy 23(12):1265–1270PubMedCrossRef Mahar A, Tamborlane J, Oka R, Esch J, Pedowitz RA (2007) Single-row suture anchor repair of the rotator cuff is biomechanically equivalent to double-row repair in a bovine model. Arthroscopy 23(12):1265–1270PubMedCrossRef
25.
go back to reference Mazzocca AD, Millett PJ, Guanche CA, Santangelo SA, Arciero RA (2005) Arthroscopic single-row versus double-row suture anchor rotator cuff repair. Am J Sports Med 33(12):1861–1868PubMedCrossRef Mazzocca AD, Millett PJ, Guanche CA, Santangelo SA, Arciero RA (2005) Arthroscopic single-row versus double-row suture anchor rotator cuff repair. Am J Sports Med 33(12):1861–1868PubMedCrossRef
26.
go back to reference Milano G, Grasso A, Zarelli D, Deriu L, Cillo M, Fabbriciani C (2008) Comparison between single-row and double-row rotator cuff repair: a biomechanical study. Knee Surg Sports Traumatol Arthrosc 16(1):75–80PubMedCrossRef Milano G, Grasso A, Zarelli D, Deriu L, Cillo M, Fabbriciani C (2008) Comparison between single-row and double-row rotator cuff repair: a biomechanical study. Knee Surg Sports Traumatol Arthrosc 16(1):75–80PubMedCrossRef
27.
go back to reference Mochizuki T, Sugaya H, Uomizu M, Maeda K, Matsuki K, Sekiya I, Muneta T, Akita K (2009) Humeral insertion of the supraspinatus and infraspinatus. New anatomical findings regarding the footprint of the rotator cuff. Surgical technique. J Bone Jt Surg Am 91(Suppl 2 Pt 1):1–7 Mochizuki T, Sugaya H, Uomizu M, Maeda K, Matsuki K, Sekiya I, Muneta T, Akita K (2009) Humeral insertion of the supraspinatus and infraspinatus. New anatomical findings regarding the footprint of the rotator cuff. Surgical technique. J Bone Jt Surg Am 91(Suppl 2 Pt 1):1–7
28.
go back to reference Park MC, ElAttrache NS, Ahmad CS, Tibone JE (2006) “Transosseous-equivalent” rotator cuff repair technique. Arthroscopy 22(12):1360.e1361–1360.e1365 Park MC, ElAttrache NS, Ahmad CS, Tibone JE (2006) “Transosseous-equivalent” rotator cuff repair technique. Arthroscopy 22(12):1360.e1361–1360.e1365
29.
go back to reference Park MC, ElAttrache NS, Tibone JE, Ahmad CS, Jun BJ, Lee TQ (2007) Part I: footprint contact characteristics for a transosseous-equivalent rotator cuff repair technique compared with a double-row repair technique. J Should Elbow Surg 16(4):461–468CrossRef Park MC, ElAttrache NS, Tibone JE, Ahmad CS, Jun BJ, Lee TQ (2007) Part I: footprint contact characteristics for a transosseous-equivalent rotator cuff repair technique compared with a double-row repair technique. J Should Elbow Surg 16(4):461–468CrossRef
30.
go back to reference Park MC, Tibone JE, ElAttrache NS, Ahmad CS, Jun BJ, Lee TQ (2007) Part II: biomechanical assessment for a footprint-restoring transosseous-equivalent rotator cuff repair technique compared with a double-row repair technique. J Should Elbow Surg 16(4):469–4761CrossRef Park MC, Tibone JE, ElAttrache NS, Ahmad CS, Jun BJ, Lee TQ (2007) Part II: biomechanical assessment for a footprint-restoring transosseous-equivalent rotator cuff repair technique compared with a double-row repair technique. J Should Elbow Surg 16(4):469–4761CrossRef
31.
go back to reference Pauly S, Fiebig D, Kieser B, Albrecht B, Schill A, Scheibel M (2011) Biomechanical comparison of four double-row speed-bridging rotator cuff repair techniques with or without medial or lateral row enhancement. Knee Surg Sports Traumatol Arthrosc 19(12):2090–2097PubMedCrossRef Pauly S, Fiebig D, Kieser B, Albrecht B, Schill A, Scheibel M (2011) Biomechanical comparison of four double-row speed-bridging rotator cuff repair techniques with or without medial or lateral row enhancement. Knee Surg Sports Traumatol Arthrosc 19(12):2090–2097PubMedCrossRef
32.
go back to reference Pauly S, Kieser B, Schill A, Gerhardt C, Scheibel M (2010) Biomechanical comparison of 4 double-row suture-bridging rotator cuff repair techniques using different medial-row configurations. Arthroscopy 26(10):1281–1288PubMedCrossRef Pauly S, Kieser B, Schill A, Gerhardt C, Scheibel M (2010) Biomechanical comparison of 4 double-row suture-bridging rotator cuff repair techniques using different medial-row configurations. Arthroscopy 26(10):1281–1288PubMedCrossRef
33.
go back to reference Petit CJ, Boswell R, Mahar A, Tasto J, Pedowitz RA (2003) Biomechanical evaluation of a new technique for rotator cuff repair. Am J Sports Med 31(6):849–853PubMed Petit CJ, Boswell R, Mahar A, Tasto J, Pedowitz RA (2003) Biomechanical evaluation of a new technique for rotator cuff repair. Am J Sports Med 31(6):849–853PubMed
34.
go back to reference Scheibel MT, Habermeyer P (2003) A modified Mason-Allen technique for rotator cuff repair using suture anchors. Arthroscopy 19(3):330–333PubMedCrossRef Scheibel MT, Habermeyer P (2003) A modified Mason-Allen technique for rotator cuff repair using suture anchors. Arthroscopy 19(3):330–333PubMedCrossRef
35.
go back to reference Smith CD, Alexander S, Hill AM, Huijsmans PE, Bull AM, Amis AA, De Beer JF, Wallace AL (2006) A biomechanical comparison of single and double-row fixation in arthroscopic rotator cuff repair. J Bone Jt Surg Am 88(11):2425–2431CrossRef Smith CD, Alexander S, Hill AM, Huijsmans PE, Bull AM, Amis AA, De Beer JF, Wallace AL (2006) A biomechanical comparison of single and double-row fixation in arthroscopic rotator cuff repair. J Bone Jt Surg Am 88(11):2425–2431CrossRef
36.
go back to reference Spang JT, Buchmann S, Brucker PU, Kouloumentas P, Obst T, Schroder M, Burgkart R, Imhoff AB (2009) A biomechanical comparison of 2 transosseous-equivalent double-row rotator cuff repair techniques using bioabsorbable anchors: cyclic loading and failure behavior. Arthroscopy 25(8):872–879PubMedCrossRef Spang JT, Buchmann S, Brucker PU, Kouloumentas P, Obst T, Schroder M, Burgkart R, Imhoff AB (2009) A biomechanical comparison of 2 transosseous-equivalent double-row rotator cuff repair techniques using bioabsorbable anchors: cyclic loading and failure behavior. Arthroscopy 25(8):872–879PubMedCrossRef
37.
go back to reference Viidik A (1979) Biomechanical behaviour of soft connective tissues. In: Akkas N, Aan de Rijn A (eds) Progress in biomechanics. Sijthoff and Nordhoff, The Netherlands, pp 75–113 Viidik A (1979) Biomechanical behaviour of soft connective tissues. In: Akkas N, Aan de Rijn A (eds) Progress in biomechanics. Sijthoff and Nordhoff, The Netherlands, pp 75–113
Metadata
Title
Superiority of bridging techniques with medial fixation on initial strength
Authors
Werner Anderl
Philipp R. Heuberer
Brenda Laky
Bernhard Kriegleder
Roland Reihsner
Josef Eberhardsteiner
Publication date
01-12-2012
Publisher
Springer-Verlag
Published in
Knee Surgery, Sports Traumatology, Arthroscopy / Issue 12/2012
Print ISSN: 0942-2056
Electronic ISSN: 1433-7347
DOI
https://doi.org/10.1007/s00167-012-1922-9

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