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請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/60222
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor章良渭(Liang-Wey Chang)
dc.contributor.authorChien-Hung Chenen
dc.contributor.author陳建宏zh_TW
dc.date.accessioned2021-06-16T10:13:51Z-
dc.date.available2015-09-02
dc.date.copyright2013-09-02
dc.date.issued2013
dc.date.submitted2013-08-19
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20. Gary A Knutson. Anatomic and functional leg-length inequality: A review and recommendation for clinical decision-making. Part I, anatomic leg-length inequality: prevalence, magnitude, effects and clinical significance. Chiropractic & Osteopathy 2005;13:11
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22. Robert Cooperstein MA, DC, Makani Lew DC. The relationship between pelvic torsion and anatomical leg length inequality: a review of the literature. Journal of Chiropractic Medicine. 2009;8:107–118
23. Giles LG. Lumbosacral facetal “ joint angles ” associated with leg length inequality. Rheumatol Rehabil 1981;20(4):233–8.
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29. Alfred L, Clavel Jr, MD. Sacroiliac joint dysfunction: From a simple pain in the butt to integrated care for complex low back pain. Techniques in Regional Anesthesia and Pain Management 2011;15(2):40–50.
30. Pamela M. Barton. Piriformis syndrome: a rational approach to management. Pain 1991; 47:345–352.
31. Dale Schuit, Marlene Adrian and Peter Pidcoe. Effect of Heel Lifts on Ground Reaction Force Patterns in Subjects with Structural Leg-Length Discrepancies. Physical Therapy 1989;69(8):663–670.
32. Robert A. Siston, Scott L. Delp. Evaluation of a new algorithm to determine the hip joint center. Journal of Biomechanics 2006;39:125–130.
33. Stephanie B . Michaud, MS; Steven A. Gard, PhD ; Dudley S . Childress, PhD. A preliminary investigation of pelvic obliquity patterns during gait in persons with transtibial and transfemoral amputation. Journal of Rehabilitation Research and Development 2000; 37(1): 1—10
34. William F. Harvey, MD, MSc; Mei Yang, PhD; Theodore D.V. Cooke, MA, MB, BChir; Neil A. Segal, MD, MS; Nancy Lane, MD; Cora E. Lewis, MD, MSPH; and David T. Felson, MD, MPH. Association of leg-length inequality with knee osteoarthritis: a cohort study. Ann Intern Med 2010; 152(5):287-95.
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36. Andi Eliizabeth Mincer, Gordon S. Cummings, Paul D. Andrew, Joseph L. Rau. Effect of leg length discrepancy on trunk muscle fatigue and uninteded trunk movement. J. Phys. Ther. Sci. 1997;9:1–6
37. Rebecca S. Young, Paul D. Andrew , Gordon S. CummingsEffect of simulating leg length inequality on pelvic torsion and trunk mobility. Gait and Posture 2000;11:217–223
38. Burke Gurney, Christine Mermier, Robert Robergs, Anne Gibson and Dennis Rivero. Effects of Limb-Length Discrepancy on Gait Economy and Lower-Extremity Muscle Activity in Older Adults. J Bone Joint Surg Am 2001;83: 907–915
39. Stephen J. Stricker, MD, Terrance Hunt, BS. Evaluation of Leg Length Discrepancy in Children. International Pediatrics 2004; 19(3):134–146
40. E. Maupas, J. Paysant, A.M. Datie, N. Martinet, J.M. Andre.Functional asymmetries of the lower limbs. A comparison between clinical assessment of laterality, isokinetic evaluation and electrogoniometric monitoring of knees during walking. Gait and Posture 2002;16:304–312
41. J. R. Perttunen, E. Anttila, J. So‥dergard, J. Merikanto, P. V. Komi. Gait asymmetry in patients with limb length discrepancy Scand J Med Sci Sports 2004;14: 49–56
42. Ines A. Kramers-de Quervain, Roland Muller, A. Stacoff, Dieter Grob, Edgar StussiGait_analysis_in_patients_with_idiopathic_scoliosis. Eur Spine J 2004;13 : 449–456
43. ALEXANDER L. BELL, DOUGLAS R. PEDERSEN, RICHARD A. BRAND. A Comparison of the accuracy of several hip center location prediction methods. J. Biomechhanics 1990;23(6):617–621
44. Anil Bhave, Dror Paley, John E. Herzenberg. Improvement in Gait Parameters After Lengthening for the Treatment of Limb-Length Discrepancy. J Bone Joint Surg Am. 1999;81: 529–534
45. Nancy A. Potter, Jules M. Rothstein. Intertester Reliability for Selected Clinical Tests of the Sacroiliac Joint. PHYSICAL THERAPY 1985;65(11): 1671–1675
46. Burke Gurney. Review: Leg length discrepancy. Gait and Posture 2002;15:195–206
47. M. Walsh, P. Connolly, A. Jenkinson, T. O’Brien. Leg length discrepancy — an experimental study of compensatory changes in three dimensions using gait analysis. Gait and Posture 2000;12:156–161.
48. Pamela M. Barton . Piriformis syndrome a rational approach to management. Pain 1991;47:345-352
49. Heydar Sadeghi, Paul Allard, Franc﹐ois Prince, Hubert Labelle. Symmetry and limb dominance in able-bodied gait a review. Gait and Posture 2000;12:34–45
50. Kit M. Song, Suzanne E. Halliday and David G. Little. The Effect of Limb-Length Discrepancy on Gait. J Bone Joint Surg Am. 1997;79:1690-8.
51. Matthew K. Seeley, Brian R. Umberger, Jody L. Clasey, and Robert Shapiro. The relation between mild leg-length inequality and able-bodied gait asymmetry. Journal of Sports Science and Medicine 2010; 9:572-579
52. Robert Cooperstein MA, DC, Makani Lew DC. The relationship between pelvic torsion and anatomical leg length inequality a review of the literature. Journal of Chiropractic Medicine 2009;8:107 – 118
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/60222-
dc.description.abstract目的:探討輕微結構性長短腿的症狀力學,包含骨盆扭轉與梨狀肌失能等因素。
設計:前瞻性研究,採用配對T檢定統計分析
實驗場域:台灣大學身心障礙者輔具工程研究中心,復健工程與步態實驗室
受測者:年輕的輕微長短腿患者,排除各種肌肉骨骼疾病主要量測參數:長短腿、相對的腳掌偏移量△Ef、骨盆扭轉角度Pt、髖關節的內收 (hip adduction) 活動角度以及內轉(internal rotation)活動角度ROMadd與ROMinf,外側的地面反作用衝力If、作用在髖關節上的內旋鉛直力矩衝量Im
結果:所有的參數在長腿側與短腿側的表現都有顯著的不同。Pt在短腿側皆為負值,但在長腿側皆為正值,ROMadd和ROMinf在短腿側的數值顯著小於長腿側。 If和Im在短腿側的數值顯著大於長腿側。所有的參數除了△If均與LLD有顯著的相關性。
結論:即使是輕微長短腿也會導致骨盆扭轉,這可能導致短腿側的梨狀肌緊蹦與限制髖關節的被動關節活動度,此外在步態上,也會影響外側的地面反作用力和垂直力矩。
關鍵詞:長短腿、骨盆扭轉、骶髂關節障礙、梨狀肌、步態分析
zh_TW
dc.description.abstractObjective: The aim of this research is to study the musculoskeletal pathomechanics of anatomical leg length discrepancy (LLD) in relation to pelvic torsion and piriformis muscle malfunction.
Design: Prospective experiment, paired t-test.
Setting: Rehabilitation Engineering Research Center at National Taiwan University with instrumented gait laboratory.
Participants: Young mild LLD subjects without musculoskeletal disease
Main outcome measures: Leg length Discrepancy, relative foot sole excursion △If, Pelvic inclinometer output Pt, ROM of hip adduction and internal rotation ROMadd and ROMinf, lateral direction ground reaction force If, internally rotation vertical moment acting on the hip Im
Results: All the parameters showed significant difference between the longer limb and the shorter limb. Pt were negative for the shorter leg but positive for the counterlimb, ROMadd and ROMinf of the shorter limb were smaller than of the longer limb. If and Im of the shorter limb were larger than of the longer limb. All the parameter was correlated to the LLD except △If.
Conclusion: Even mild LLD could lead pelvic torsion, which might cause the piriformis muscle tightness and limit the static ROM of hip of the shorter limb; in addition, affect the gait with lateral direction ground reaction force and vertical moment.
Keywords: LLD, pelvic torsion, sacroiliac joint dysfunction, piriformis muscle, gait analysis.
en
dc.description.provenanceMade available in DSpace on 2021-06-16T10:13:51Z (GMT). No. of bitstreams: 1
ntu-102-R99548043-1.pdf: 5162750 bytes, checksum: 7de33589273bd65d6173319d969bfe10 (MD5)
Previous issue date: 2013
en
dc.description.tableofcontentsContents
國立臺灣大學(碩)博士學位論文口試委員會審定書 1
謝詞 ii
Abstact v
中文摘要 vi
The List of Figures ix
The List of Tables xii
Chapter 1 Introduction 1
1.1 Background and Research Motivation 1
1.2 Research Questions 2
1.3 Literature Review 3
1.3.1 Assessment of LLD 3
1.3.2 Distribution of LLD 6
1.3.3 Pelvic Torsion 7
1.3.4 Supine to Sitting Test 9
1.3.5 Pelvic Torsion and Piriformis 10
1.3.6 Femoral Internal Rotation Tests and FAIR Tests 11
1.3.7 Gait Analysis 12
1.4 Objectives and Hypotheses 13
Chapter 2 Materials and Methods 13
2.1 Subjects 14
2.2 Materials 15
2.3 Experiment protocol 18
2.4 Data Analysis 26
2.4.1 Transverse Ground reaction Force and External Moment about the hip joint 26
2.4.2 Statistical Analysis 32
Chapter 3 Results 33
3.1 Clinical Trial Results and Gait Parameters of Mild LLD Patients 33
3.2 Comparison of The Data of The Longer Limbs and of the Shorter Limbs in Mild LLD Patients 35
3.3 Correlation Between The LLD, Clinical Trial Results, and Gait Parameters in Mild LLD Patients 36
Pearson's Correlations 42
Chapter 4 Discussion 43
4.1 The Pelvic Torsion in Mild LLD Patients 43
4.2 The Supine to Sit Test in Mild LLD Patients 43
4.3 The Muscle Tightness in Mild LLD Patients 44
4.4 The Mild LLD Patients with Gait Analysis 45
4.5 The Mild LLD Patients Pathomechanics 45
Chapter 5 Conclusion 48
References 49
Appendix 55
dc.language.isoen
dc.subject長短腿zh_TW
dc.subject骨盆扭轉zh_TW
dc.subject髂關節障礙zh_TW
dc.subject梨狀肌zh_TW
dc.subject步態分析zh_TW
dc.subjectgait analysisen
dc.subjectpiriformis muscleen
dc.subjectsacroiliac joint dysfunctionen
dc.subjectLLDen
dc.subjectpelvic torsionen
dc.title輕微結構性長短腿症狀的生物力學:輕微結構性長短腿甚至可能造成人體肌肉骨骼結構功能失常嗎?zh_TW
dc.titleMild Anatomical Leg Length Discrepancy and Musculoskeletal Pathomechanics: Could even the mild anatomical leg length discrepancy cause the structural and functional disorder of the human musculoskeletal system?en
dc.typeThesis
dc.date.schoolyear101-2
dc.description.degree碩士
dc.contributor.oralexamcommittee陳適卿(Shin-Ching CHEN),劉士嘉(Shih-Jia Liu)
dc.subject.keyword長短腿,骨盆扭轉,&#39606,髂關節障礙,梨狀肌,步態分析,zh_TW
dc.subject.keywordLLD,pelvic torsion,sacroiliac joint dysfunction,piriformis muscle,gait analysis,en
dc.relation.page60
dc.rights.note有償授權
dc.date.accepted2013-08-20
dc.contributor.author-college工學院zh_TW
dc.contributor.author-dept醫學工程學研究所zh_TW
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