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Published in: Archives of Orthopaedic and Trauma Surgery 8/2010

01-08-2010 | Arthroscopy and Sports Medicine

Correlation between dynamic postural stability and muscle strength, anterior instability, and knee scale in anterior cruciate ligament deficient knees

Authors: Won-Hah Park, Do-Kyung Kim, Jae Chul Yoo, Yong Seuk Lee, Ji-Hye Hwang, Moon Jong Chang, Yong Serk Park

Published in: Archives of Orthopaedic and Trauma Surgery | Issue 8/2010

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Abstract

Aim

The purpose of this study was to assess the correlations between dynamic postural stability and muscle strength, anterior instability, and knee scores in anterior cruciate ligament (ACL) deficient knees.

Method

We examined 40 male patients with ACL injury prior to surgery. Maximal torques of flexors and extensors of the injured knee at 60 and 180°/s were evaluated using an isokinetic testing device. Anterior translations of the tibia were measured using a KT-2000 arthrometer, and dynamic postural stabilities were measured during single-leg stance using the Biodex Stability System (BSS). Knee statuses were evaluated using Lysholm and International Knee Documentation Committee (IKDC) knee scores. Correlations between dynamic postural stability and muscle strength, anterior instability, and knee scores were determined.

Results

Significant correlations were found between maximal torques of the extensor of injured knees at 60 and 180°/s (r = −0.52, p = 0.048 and r = −0.46, p = 0.019, respectively) and dynamic postural stability, and maximal torques of flexors of injured knees showed similar relations (r = −0.51, p = 0.0048 and r = −0.47, p = 0.016, respectively). Lysholm and IKDC knee scores were also found to be correlated with dynamic postural stability (r = −0.49, p = 0.001 and r = −0.52, p = 0.005, respectively). However, no correlation was found between grade of anterior translation measured using the KT-2000 arthrometer and dynamic postural stability (p = 1.0).

Conclusion

Dynamic postural stability determined using the BSS appears to be influenced by muscle strength, as determined by isokinetic testing, but not with grade of anterior translation measured using a KT-2000 arthrometer. Subjective knee scores appear to improve in parallel with dynamic postural stability.
Literature
1.
go back to reference Arnold BL, Schmitz RJ (1998) Examination of balance measures produced by the Biodex Stability System. J Athl Train 33:323–327PubMed Arnold BL, Schmitz RJ (1998) Examination of balance measures produced by the Biodex Stability System. J Athl Train 33:323–327PubMed
2.
go back to reference Chaory K, Poiraudeau S (2004) Rating scores for ACL ligamentoplasty. Ann Readapt Med Phys 47:309–316PubMed Chaory K, Poiraudeau S (2004) Rating scores for ACL ligamentoplasty. Ann Readapt Med Phys 47:309–316PubMed
3.
4.
go back to reference Corrigan JP, Cashman WF, Brady MP (1992) Proprioception in the cruciate deficient knee. J Bone Joint Surg Br 74:247–250PubMed Corrigan JP, Cashman WF, Brady MP (1992) Proprioception in the cruciate deficient knee. J Bone Joint Surg Br 74:247–250PubMed
5.
go back to reference Daniel DM, Stone ML, Dobson BE, Fithian DC, Rossman DJ, Kaufman KR (1994) Fate of the ACL-injured patient. A prospective outcome study. Am J Sports Med 22:632–644CrossRefPubMed Daniel DM, Stone ML, Dobson BE, Fithian DC, Rossman DJ, Kaufman KR (1994) Fate of the ACL-injured patient. A prospective outcome study. Am J Sports Med 22:632–644CrossRefPubMed
6.
go back to reference Daniel DM, Stone ML, Sachs R, Malcom L (1985) Instrumented measurement of anterior knee laxity in patients with acute anterior cruciate ligament disruption. Am J Sports Med 13:401–407CrossRefPubMed Daniel DM, Stone ML, Sachs R, Malcom L (1985) Instrumented measurement of anterior knee laxity in patients with acute anterior cruciate ligament disruption. Am J Sports Med 13:401–407CrossRefPubMed
7.
go back to reference Dye SF, Cannon WD Jr (1988) Anatomy and biomechanics of the anterior cruciate ligament. Clin Sports Med 7:715–725PubMed Dye SF, Cannon WD Jr (1988) Anatomy and biomechanics of the anterior cruciate ligament. Clin Sports Med 7:715–725PubMed
8.
go back to reference Fuchs S, Friedrich M (1999) Effect of patient age on use of the knee joint score. Z Orthop Ihre Grenzgeb 137:322–329CrossRefPubMed Fuchs S, Friedrich M (1999) Effect of patient age on use of the knee joint score. Z Orthop Ihre Grenzgeb 137:322–329CrossRefPubMed
9.
go back to reference Fuchs S, Friedrich M (2000) Possible influence of knee scores. Unfallchirurg 103:44–50PubMed Fuchs S, Friedrich M (2000) Possible influence of knee scores. Unfallchirurg 103:44–50PubMed
10.
go back to reference Grimby G, Gustafsson E, Peterson L, Renstrom P (1980) Quadriceps function and training after knee ligament surgery. Med Sci Sports Exerc 12:70–75PubMed Grimby G, Gustafsson E, Peterson L, Renstrom P (1980) Quadriceps function and training after knee ligament surgery. Med Sci Sports Exerc 12:70–75PubMed
11.
go back to reference Hefti F, Muller W (1993) Current state of evaluation of knee ligament lesions. The new IKDC knee evaluation form. Orthopade 22:351–362PubMed Hefti F, Muller W (1993) Current state of evaluation of knee ligament lesions. The new IKDC knee evaluation form. Orthopade 22:351–362PubMed
12.
go back to reference Hefti F, Muller W, Jakob RP, Staubli HU (1993) Evaluation of knee ligament injuries with the IKDC form. Knee Surg Sports Traumatol Arthrosc 1:226–234CrossRefPubMed Hefti F, Muller W, Jakob RP, Staubli HU (1993) Evaluation of knee ligament injuries with the IKDC form. Knee Surg Sports Traumatol Arthrosc 1:226–234CrossRefPubMed
13.
go back to reference Keays SL, Bullock-Saxton JE, Newcombe P, Bullock MI (2006) The effectiveness of a pre-operative home-based physiotherapy programme for chronic anterior cruciate ligament deficiency. Physiother Res Int 11:204–218CrossRefPubMed Keays SL, Bullock-Saxton JE, Newcombe P, Bullock MI (2006) The effectiveness of a pre-operative home-based physiotherapy programme for chronic anterior cruciate ligament deficiency. Physiother Res Int 11:204–218CrossRefPubMed
14.
go back to reference Kennedy JC, Alexander IJ, Hayes KC (1982) Nerve supply of the human knee and its functional importance. Am J Sports Med 10:329–335CrossRefPubMed Kennedy JC, Alexander IJ, Hayes KC (1982) Nerve supply of the human knee and its functional importance. Am J Sports Med 10:329–335CrossRefPubMed
15.
go back to reference Labs K, Paul B (1997) To compare and contrast the various evaluation scoring systems after anterior cruciate ligament reconstruction. Arch Orthop Trauma Surg 116:92–96CrossRefPubMed Labs K, Paul B (1997) To compare and contrast the various evaluation scoring systems after anterior cruciate ligament reconstruction. Arch Orthop Trauma Surg 116:92–96CrossRefPubMed
16.
go back to reference Liu-Ambrose T, Taunton JE, MacIntyre D, McConkey P, Khan KM (2003) The effects of proprioceptive or strength training on the neuromuscular function of the ACL reconstructed knee: a randomized clinical trial. Scand J Med Sci Sports 13:115–123CrossRefPubMed Liu-Ambrose T, Taunton JE, MacIntyre D, McConkey P, Khan KM (2003) The effects of proprioceptive or strength training on the neuromuscular function of the ACL reconstructed knee: a randomized clinical trial. Scand J Med Sci Sports 13:115–123CrossRefPubMed
17.
go back to reference Lysholm J, Gillquist J (1982) Evaluation of knee ligament surgery results with special emphasis on use of a scoring scale. Am J Sports Med 10:150–154CrossRefPubMed Lysholm J, Gillquist J (1982) Evaluation of knee ligament surgery results with special emphasis on use of a scoring scale. Am J Sports Med 10:150–154CrossRefPubMed
18.
go back to reference O’Connell M, George K, Stock D (1998) Postural sway and balance testing: a comparison of normal and anterior cruciate ligament deficient knees. Gait Posture 8:136–142CrossRefPubMed O’Connell M, George K, Stock D (1998) Postural sway and balance testing: a comparison of normal and anterior cruciate ligament deficient knees. Gait Posture 8:136–142CrossRefPubMed
19.
go back to reference Okuda K, Abe N, Katayama Y, Senda M, Kuroda T, Inoue H (2005) Effect of vision on postural sway in anterior cruciate ligament injured knees. J Orthop Sci 10:277–283CrossRefPubMed Okuda K, Abe N, Katayama Y, Senda M, Kuroda T, Inoue H (2005) Effect of vision on postural sway in anterior cruciate ligament injured knees. J Orthop Sci 10:277–283CrossRefPubMed
20.
go back to reference Peters G, Wirth CJ, Kohn D (1997) Comparison of knee ligament scores and rating systems. Z Orthop Ihre Grenzgeb 135:63–69CrossRefPubMed Peters G, Wirth CJ, Kohn D (1997) Comparison of knee ligament scores and rating systems. Z Orthop Ihre Grenzgeb 135:63–69CrossRefPubMed
21.
go back to reference Reider B, Arcand MA, Diehl LH, Mroczek K, Abulencia A, Stroud CC, Palm M, Gilbertson J, Staszak P (2003) Proprioception of the knee before and after anterior cruciate ligament reconstruction. Arthroscopy 19:2–12CrossRefPubMed Reider B, Arcand MA, Diehl LH, Mroczek K, Abulencia A, Stroud CC, Palm M, Gilbertson J, Staszak P (2003) Proprioception of the knee before and after anterior cruciate ligament reconstruction. Arthroscopy 19:2–12CrossRefPubMed
22.
go back to reference Riemann BL (2002) Is there a link between chronic ankle instability and postural instability? J Athl Train 37:386–393PubMed Riemann BL (2002) Is there a link between chronic ankle instability and postural instability? J Athl Train 37:386–393PubMed
23.
go back to reference Schultz RA, Miller DC, Kerr CS, Micheli L (1984) Mechanoreceptors in human cruciate ligaments. A histological study. J Bone Joint Surg Am 66:1072–1076PubMed Schultz RA, Miller DC, Kerr CS, Micheli L (1984) Mechanoreceptors in human cruciate ligaments. A histological study. J Bone Joint Surg Am 66:1072–1076PubMed
24.
go back to reference Schutte MJ, Dabezies EJ, Zimny ML, Happel LT (1987) Neural anatomy of the human anterior cruciate ligament. J Bone Joint Surg Am 69:243–247PubMed Schutte MJ, Dabezies EJ, Zimny ML, Happel LT (1987) Neural anatomy of the human anterior cruciate ligament. J Bone Joint Surg Am 69:243–247PubMed
25.
go back to reference Slauterbeck JR, Hickox JR, Beynnon B, Hardy DM (2006) Anterior cruciate ligament biology and its relationship to injury forces. Orthop Clin North Am 37:585–591CrossRefPubMed Slauterbeck JR, Hickox JR, Beynnon B, Hardy DM (2006) Anterior cruciate ligament biology and its relationship to injury forces. Orthop Clin North Am 37:585–591CrossRefPubMed
26.
go back to reference Solomonow M, Baratta R, Zhou BH, Shoji H, Bose W, Beck C, D’Ambrosia R (1987) The synergistic action of the anterior cruciate ligament and thigh muscles in maintaining joint stability. Am J Sports Med 15:207–213CrossRefPubMed Solomonow M, Baratta R, Zhou BH, Shoji H, Bose W, Beck C, D’Ambrosia R (1987) The synergistic action of the anterior cruciate ligament and thigh muscles in maintaining joint stability. Am J Sports Med 15:207–213CrossRefPubMed
27.
go back to reference Wikstrom EA, Tillman MD, Chmielewski TL, Borsa PA (2006) Measurement and evaluation of dynamic joint stability of the knee and ankle after injury. Sports Med 36:393–410CrossRefPubMed Wikstrom EA, Tillman MD, Chmielewski TL, Borsa PA (2006) Measurement and evaluation of dynamic joint stability of the knee and ankle after injury. Sports Med 36:393–410CrossRefPubMed
Metadata
Title
Correlation between dynamic postural stability and muscle strength, anterior instability, and knee scale in anterior cruciate ligament deficient knees
Authors
Won-Hah Park
Do-Kyung Kim
Jae Chul Yoo
Yong Seuk Lee
Ji-Hye Hwang
Moon Jong Chang
Yong Serk Park
Publication date
01-08-2010
Publisher
Springer-Verlag
Published in
Archives of Orthopaedic and Trauma Surgery / Issue 8/2010
Print ISSN: 0936-8051
Electronic ISSN: 1434-3916
DOI
https://doi.org/10.1007/s00402-010-1080-9

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