1 |
Lee JC, Mitchell AW, Healy JC. Imaging of muscle injury in the elite athlete [J]. Br J Radiol, 2014, 85(1016): 1173-1185.
|
2 |
Bresler M, Mar W, Toman J. Diagnostic imaging in the evaluation of leg pain in athletes [J]. Clin Sports Med, 2012, 31(2): 217-245.
|
3 |
Walmsley EA, Steel CM, Richardson JL, et al. Muscle strain injuries of the hindlimb in eight horses: diagnostic imaging, management and outcomes [J]. Aust Vet J, 2010, 88(8): 313-321.
|
4 |
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.
|
5 |
You MW, Kim KW, Pyo J, et al. A Meta-analysis for the Diagnostic Performance of Transient Elastography for Clinically Significant Portal Hypertension [J]. Ultrasound Med Biol, 2017, 43(1): 59-68.
|
6 |
Sande JA, Verjee S, Vinayak S, et al. Ultrasound shear wave elastography and liver fibrosis: A Prospective Multicenter Study [J]. World J Hepatol, 2017, 9(1): 38-47.
|
7 |
Dietrich CF, Bamber J, Berzigotti A, et al. EFSUMB Guidelines and Recommendations on the Clinical Use of Liver Ultrasound Elastography, Update 2017 (Long Version) [J]. Ultraschall Med, 2017, 38(4): e16-e47.
|
8 |
Chen XM, Cui LG, He P, et al. Shear wave elastographic characterization of normal and torn achilles tendons [J]. J Ultrasound Med, 2013, 32(3): 449-455.
|
9 |
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.
|
10 |
Aubry S, Risson JR, Kastler A, et al. Biomechanical properties of the calcaneal tendon in vivo assessed by transient shear wave elastography [J]. Skeletal Radiol, 2013, 42(8): 1143-1150.
|
11 |
Petrescu PH, Izvernariu DA, Iancu C, et al. Evaluation of normal and pathological Achilles tendon by real-time shear wave elastography [J]. Rom J Morphol Embryol, 2016, 57(2 Suppl): 785-790.
|
12 |
Sconfienza LM, Silvestri E, Cimmino MA. Sonoelastography in the evaluation of painful Achilles tendon in amateur athletes [J]. Clin Exp Rheumatol, 2010, 28(3): 373-378.
|
13 |
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.
|
14 |
张立宁, 万文博, 张立海, 等. 剪切波弹性成像评价足底筋膜炎 [J]. 南方医科大学学报, 2014, 34(2): 206-209.
|
15 |
Sahin H, Tholema N, Petersen W, et al. Impaired biomechanical properties correlate with neoangiogenesis as well as VEGF and MMP-3 expression during rat patellar tendon healing [J]. J Orthop Res, 2012, 30(12): 1952-1957.
|
16 |
Tuite DJ, Renström PA, O′Brien M. The aging tendon [J]. Scand J Med Sci Sports, 1997, 7(2): 72-77.
|
17 |
Zhang ZJ, Fu SN. Shear Elastic Modulus on Patellar Tendon Captured from Supersonic Shear Imaging: Correlation with Tangent Traction Modulus Computed from Material Testing System and Test-Retest Reliability [J]. PloS One, 2013, 8(6): e68216.
|
18 |
Kot BC, Zhang ZJ, Lee AW, et al. Elastic modulus of muscle and tendon with shear wave ultrasound elastography: variations with different technical settings [J]. PloS One, 2012, 7(8): e44348.
|
19 |
Lacourpaille L, Hug F, Guével A, et al. Non-invasive assessment of muscle stiffness in patients with Duchenne muscular dystrophy [J]. Muscle Nerve, 2015, 51(2): 284-286.
|
20 |
Nordez A, Hug F. Muscle shear elastic modulus measured using supersonic shear imaging is highly related to muscle activity level [J]. J Appl Physiol (1985), 2010, 108(5): 1389-1394.
|
21 |
Basford JR, Jenkyn TR, An KN, et al. Evaluation of healthy and diseased muscle with magnetic resonance elastography [J]. Arch Phys Med Rehabil, 2002, 83(11): 1530-1536.
|
22 |
温朝阳, 范春芝, 袭九春, 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): 61-63.
|
23 |
肖沪生, 任亚娟, 徐智章, 等. 肱二头肌收缩的剪切波声弹性成像动态测定及其生理学意义探讨 [J]. 上海医学影像, 2012, 21(2): 81-83.
|
24 |
Koo TK, Guo JY, Cohen JH, et al. Quantifying the passive stretching response of human tibialis anterior muscle using shear wave elastography [J]. Clin Biomech (Bristol, Avon), 2014, 29(1): 33-39.
|
25 |
Eby SF, Song P, Chen S, et al. Validation of shear wave elastography in skeletal muscle [J]. J Biomech, 2013, 46(14):2381-2387.
|
26 |
杜丽娟, 程令刚, 李晨, 等. 实时剪切波超声弹性成像技术评估帕金森病患者上肢肌张力的临床研究 [J]. 首都医科大学学报, 2014, 35(2): 155-158.
|
27 |
王瑾, 王慧芳, 陈华, 等. 实时剪切波弹性成像测量女性耻骨直肠肌杨氏模量值 [J]. 中国医学影像技术, 2015, 31(4): 586-589.
|
28 |
Kantarci F, Ustabasioglu FE, Delil S, et al. Median nerve stiffness measurement by shear wave elastography: a potential sonographic method in the diagnosis of carpal tunnel syndrome [J]. Eur Radiol, 2014, 24(2): 434-440.
|
29 |
Wang Y, Qiang B, Zhang X, et al. A non-invasive technique for estimating carpal tunnel pressure by measuring shear wave speed in tendon: a feasibility study [J]. J Biomech, 2012, 45(16): 2927-2930.
|
30 |
Greening J, Dilley A. Posture-induced changes in peripheral nerve stiffness measured by ultrasound shear-wave elastography [J]. Muscle Nerve, 2016, 55(2): 213.
|
31 |
Dikici AS, Ustabasioglu FE, Delil S, et al. Evaluation of the Tibial Nerve with Shear-Wave Elastography: A Potential Sonographic Method for the Diagnosis of Diabetic Peripheral Neuropathy [J]. Radiology, 2017, 282(2): 494-501.
|
32 |
Dikici AS, Mihmanli I, Kilic F, et al. In Vivo Evaluation of the Biomechanical Properties of Optic Nerve and Peripapillary Structures by Ultrasonic Shear Wave Elastography in Glaucoma [J]. Iran J Radiol, 2016, 13(2): e36849.
|
33 |
Couade M, Pernot M, Messas E, et al. In Vivo Quantitative Mapping of Myocardial Stiffening and Transmural Anisotropy During the Cardiac Cycle [J]. IEEE Trans Med Imaging, 2011, 30(2): 295-305.
|
34 |
Provost J, Papadacci C, Arango JE, et al. 3D ultrafast ultrasound imaging in vivo [J]. Phys Med Biol, 2014, 59(19): L1-L13.
|