1 |
孙文爽, 赵建宁, 包倪荣. 肌腱损伤治疗的研究进展[J]. 医学研究生学报, 2015, 30(3): 324-327.
|
2 |
Sharpe RE, Nazarian LN, Parker L, et al. Dramatically increased musculoskeletal ultrasound utilization from 2000 to 2009, especially by podiatrists in private offices [J]. J Am Coll Radiol, 2012, 9(2): 141-146.
|
3 |
Bamber J, Cosgrove D, Dietrich CF, et al. EFSUMB guidelines and recommendations on the clinical use of ultrasound elastography. Part 1: Basic principles and technology [J]. Ultraschall Med, 2013, 34(2):169-184.
|
4 |
Klauser AS, Miyamoto H, Bellmann-Weiler R, et al. Sonoelastography: musculoskeletal applications [J]. Radiology, 2014, 272(3): 622-633.
|
5 |
Ophir J, Céspedes I, Ponnekanti H,et al. Elastography: a quantitative method for imaging the elasticity of biological tissues [J]. Ultrason Imaging, 1991, 13(2): 111-134.
|
6 |
李强. 超声剪切波弹性成像的技术进展[J]. 中国医疗设备, 2017, 32(7): 101-105.
|
7 |
李斌, 李德来, 杨金耀, 等. 超声弹性成像技术研究现状[J]. 北京生物医学工程, 2017, 36(5): 535-539.
|
8 |
Pedersen M, Fredberg U, Langberg H. Sonoelastography as a diagnostic tool in the assessment of musculoskeletal alterations: a systematic review [J]. Ultraschall Med, 2012, 33(5): 441-446.
|
9 |
Hall TJ, Zhu Y, Spalding CS. In vivo real-time freehand palpation imaging [J]. Ultrasound Med Biol, 2003, 29(3): 427-435.
|
10 |
黄燕平, 郑永平. 基于超声的组织弹性测量之剪切波传播法[J]. 中国医疗设备, 2011, 26(10): 1-12.
|
11 |
张佳玮, 毕胜. 超声弹性成像技术在肌肉骨骼系统的应用进展[J]. 中国康复医学杂志, 2017, 32(7): 851-854.
|
12 |
李添捷, 郑永平, 汪源源. 静态超声弹性成像:主观还是客观?定性还是定量? [J]. 中国医疗设备, 2011, 26(1): 4-7.
|
13 |
Sarvazyan AP, Rudenko OV, Swanson SD, et al. Shear wave elasticity imaging: a new ultrasonic technology of medical diagnostics [J]. Ultrasound Med Biol, 1998, 24(9): 1419-1435.
|
14 |
Ryu J, Jeong WK. Current status of musculoskeletal application of shear wave elastography [J]. Ultrasonography, 2017, 36(3): 185-197.
|
15 |
Ferraioli G, Tinelli C, Dal Bello B, et al. Accuracy of real-time shear wave elastography for assessing liver fibrosis in chronic hepatitis C: a pilot study [J]. Hepatology, 2012, 56(6): 2125-2133.
|
16 |
李文雪, 朱家安. 超声弹性成像在肌肉骨骼系统中的应用[J/CD]. 中华医学超声杂志(电子版), 2015, 12(4): 263-265.
|
17 |
Dirrichs T, Quack V, Gatz M, et al. Shear Wave Elastography (SWE) for monitoring of treatment of tendinopathies: a double-blinded, longitudinal clinical study [J]. Acad Radiol, 2018, 25(3): 265-272.
|
18 |
Taljanovic MS, Gimber LH, Becker GW. Shear-wave elastography: basic physics and musculoskeletal applications [J]. Radiographics, 2017, 37(3): 855-870.
|
19 |
Weinreb JH, Sheth C, Apostolakos J, et al. Tendon structure, disease, and imaging. [J] Muscles Ligaments Tendons J, 2014, 4(1): 66-73.
|
20 |
Winn N, Lalam R, Cassar-Pullicino V. Sonoelastography in the musculoskeletal system: Current role and future directions [J]. World J Radiol, 2016, 8(11): 868-879.
|
21 |
Fu S, Cui L, Sun Y, et al. Elastic characteristics of the normal Achilles tendon assessed by virtual touch imaging quantification shear wave elastography [J]. J Ultrasound Med, 2016, 35(9): 1881-1887.
|
22 |
Aubry S, Nueffer JP, Tanter M, et al. Viscoelasticity in Achilles tendonopathy: quantitative assessment by using real-time shear-wave elastography [J]. Radiology, 2015, 274(3): 821-829.
|
23 |
Arda K, Ciledag N, Aktas E, et al. Quantitative assessment of normal soft-tissue elasticity using shear-wave ultrasound elastography [J]. AJR Am J Roentgenol, 2011, 197(3): 532-536.
|
24 |
Wakker J, Kratzer W, Graeter T, et al. Elasticity standard values of the Achilles tendon assessed with acoustic radiation force impulse elastography on healthy volunteers: a cross section study [J]. BMC Musculoskelet Disord, 2018, 19(1): 139.
|
25 |
李文雪, 朱家安, 刘芳, 等. 声脉冲辐射力成像对正常跟腱弹性特征的评估[J]. 中国超声医学杂志, 2015, 31(8): 742-744.
|
26 |
DeWall RJ, Slane LC, Lee KS, et al. Spatial variations in Achilles tendon shear wave speed [J]. J Biomech, 2014, 47(11): 2685-2692.
|
27 |
Chen XM, Cui LG, He P, et al. Shear wave elastographic characterization of normal and torn achilles tendons: A pilot study [J]. J Ultrasound Med, 2013, 32(3): 449-455.
|
28 |
Millar NL, Reilly JH, Kerr SC, et al. Hypoxia: a critical regulator of early human tendinopathy [J]. Ann Rheum Dis, 2012, 71(2): 302-310.
|
29 |
Sharma P, Maffulli N. Biology of tendon injury: healing, modeling and remodeling [J]. J Musculoskelet Neuronal Interact, 2006, 6(2): 181-190.
|
30 |
方建强, 朱文峰, 李维芝, 等. 声触诊组织成像量化技术在诊断急性跟腱炎中的应用价值[J]. 临床超声医学杂志, 2017, 19(2): 99-101.
|
31 |
De Zordo T, Chhem R, Smekal V, et al. Real-time sonoelastography: findings in patients with symptomatic achilles tendons and comparison to healthy volunteers [J]. Ultraschall Med, 2010, 31(4): 394-400.
|
32 |
Frankewycz B, Penz A, Weber J, et al. Achilles tendon elastic properties remain decreased in long term after rupture [J]. Knee Surg Sports Traumatol Arthrosc, 2018, 26(7): 2080-2087.
|
33 |
Zhang LN, Wan WB, Wang YX, et al. Evaluation of elastic stiffness in healing achilles tendon after surgical repair of a tendon rupture using in vivo ultrasound shear wave elastography [J]. Med Sci Monit, 2016, 22: 1186-1191.
|
34 |
Karatekin YS, Karaismailoglu B, Kaynak G, et al. Does elasticity of Achilles tendon change after suture applications? Evaluation of repair area by acoustic radiation force impulse elastography [J]. J Orthop Surg Res, 2018, 13(1): 45.
|
35 |
Tas S, Ruhi M, Yilmaz S, et al. Shear wave elastography is a reliable and repeatable method for measuring the elastic modulus of the rectus femoris muscle and patellar tendon [J]. J Ultrasound Med, 2017, 36(3): 565-570.
|
36 |
Hardy A, Rodaix C, Vergari C, et al. Normal range of patellar tendon elasticity using the sharewave elastography technique: an in vivo study in normal volunteers [J]. Surg Technol Int, 2017, 31: 227-230.
|
37 |
Hsiao MY, Chen YC, Lin CY, et al. Reduced patellar tendon elasticity with aging: in vivo assessment by shear wave elastography [J]. Ultrasound Med Biol, 2015, 41(11): 2899-2905.
|
38 |
Helland C, Bojsen- Møller J, Raastad T, et al. Mechanical properties of the patellar tendon in elite volleyball players with and without patellar tendinopathy [J]. Br J Sports Med, 2013, 47(13): 862-868.
|
39 |
Dirrichs T, Quack V, Gatz M, et al. Shear wave elastography (SWE) for the evaluation of patients with tendinopathies [J]. Acad Radiol, 2016, 23(10): 1204-1213.
|
40 |
Ooi CC, Richards PJ, Maffulli N, et al. A soft patellar tendon on ultrasound elastography is associated with pain and functional deficit in volleyball players [J]. J Sci Med Sport, 2016, 19(5): 373-378.
|
41 |
Itoigawa Y, Sperling JW, Steinmann SP, et al. Feasibility assessment of shear wave elastography to rotator cuff muscle [J]. Clin Anat, 2015, 28(2): 213-218.
|
42 |
张芹, 徐大华, 许华宁, 等. 实时剪切波弹性成像检测正常成人冈上肌肌腱杨氏模量值得初步研究[J]. 临床超声医学杂志, 2016, 18(9): 608-610.
|
43 |
温朝阳, 范春芝, 安力春, 等. 实时定量超声弹性成像技术检测肱二头肌松弛和紧张状态下弹性模量值差异[J/CD]. 中华医学超声杂志(电子版), 2011, 8(1): 129-134.
|
44 |
徐鸿尧, 赵建宁, 包倪荣. 肩袖损伤的机制与修复方法的研究现状及进展[J]. 医学研究生学报, 2015, 28(2): 212-217.
|
45 |
Krepkin K, Bruno M, Raya JG, et al. Quantitative assessment of the supraspinatus tendon on MRI using T2/T2* mapping and shear-wave ultrasound elastography: a pilot study [J]. Skeletal Radiol, 2017, 46(2): 191-199.
|
46 |
Tudisco C, Bisicchia S, Stefanini M, et al. Tendon quality in small unilateral supraspinatus tendon tears. Real-time sonoelastography correlates with clinical findings [J]. Knee Surg Sports Traumatol Arthrosc, 2015, 23(2): 393-398.
|
47 |
Hatta T, Giambini H, Itoigawa Y, et al. Quantifying extensibility of rotator cuff muscle with tendon rupture using shear-wave elastography: A cadaveric study [J]. J Biomech, 2017, 61: 131-136.
|
48 |
Sahan MH, Inal M, Burulday V, et al. Evaluation of tendinosis of the long head of the biceps tendon by strain and shear wave elastography [J]. Med Ultrason, 2018, 20(2): 192-198.
|
49 |
Hou SW, Merkle AN, Babb JS, et al. Shear wave ultrasound elastographic evaluation of the rotator cuff tendon [J]. J Ultrasound Med, 2017, 36(1): 95-106.
|
50 |
Rosskopf AB, Ehrmann C, Buck FM, et al. Quantitative shear-wave us elastography of the supraspinatus muscle: reliability of the method and relation to tendon integrity and muscle quality [J]. Radiology, 2016, 278(2): 465-474.
|
51 |
Lustgarten M, Redding WR, Labens R, et al. Elastographic characteristics of the metacarpal tendons in horses without clinical evidence of tendon injury [J]. Vet Radiol Ultrasound, 2014, 55(1): 92-101.
|
52 |
Tamura N, Kuroda T, Kotoyori Y, et al. Application of sonoelastography for evaluating the stiffness of equine superficial digital flexor tendon during healing [J]. Vet Rec, 2017, 180(5): 120.
|
53 |
De Zordo T, Lill SR, Fink C, et al. Real-time sonoelastography of lateral epicondylitis: comparison of findings between patients and healthy volunteers [J]. AJR Am J Roentgenol, 2009, 193(1): 180-185.
|
54 |
Klauser AS, Pamminger MJ, Halpern EJ, et al. Sonoelastography of the common flexor tendon of the elbow with histologic agreement: A cadaveric study [J]. Radiology, 2017, 283(2): 486-491.
|
55 |
Drakonaki EE, Allen GM, Wilson DJ. Real-time ultrasound elastography of the normal Achilles tendon: reproducibility and pattern description [J]. Clin Radiol, 2009, 64(12): 1196-1202.
|