Quantitative Evaluation of Denervated Muscle Atrophy with Shear Wave Ultrasound Elastography and a Comparison with the Histopathologic Parameters in an Animal Model.
暂无分享,去创建一个
Jiang Peng | Mingxue Chen | X. Jing | Yukun Luo | Yuexiang Wang | Wen-li Jiang | Jing Wen
[1] Ming-de Lu,et al. Comparison of 2-D Shear Wave Elastography and Transient Elastography for Assessing Liver Fibrosis in Chronic Hepatitis B. , 2017, Ultrasound in medicine & biology.
[2] F. Amersi,et al. Ultrasound shear wave elastography and liver fibrosis: A Prospective Multicenter Study , 2017, World journal of hepatology.
[3] S. F. Eby,et al. Quantifying passive muscle stiffness in children with and without cerebral palsy using ultrasound shear wave elastography , 2016, Developmental medicine and child neurology.
[4] V. Alves,et al. Acoustic radiation force impulse (ARFI) elastography compared with biopsy for evaluating hepatic fibrosis after liver transplantation: a cross-sectional diagnostic study. , 2016, Sao Paulo medical journal = Revista paulista de medicina.
[5] Jing Gao,et al. Ultrasound shear wave elastography in assessment of muscle stiffness in patients with Parkinson's disease: a primary observation. , 2016, Clinical imaging.
[6] Xiao-Yan Xie,et al. Breast Lesions: Quantitative Diagnosis Using Ultrasound Shear Wave Elastography-A Systematic Review and Meta--Analysis. , 2016, Ultrasound in medicine & biology.
[7] Xiaonan H. Wang,et al. Acupuncture plus low-frequency electrical stimulation (Acu-LFES) attenuates denervation-induced muscle atrophy. , 2016, Journal of applied physiology.
[8] H. Lu,et al. Implantation of muscle satellite cells overexpressing myogenin improves denervated muscle atrophy in rats , 2016, Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas.
[9] E. Conte,et al. In vivo longitudinal study of rodent skeletal muscle atrophy using ultrasonography , 2016, Scientific Reports.
[10] C. Zaidman,et al. Quantitative muscle ultrasound measures rapid declines over time in children with SMA type 1 , 2015, Journal of the Neurological Sciences.
[11] K. An,et al. Quantitative assessment of rotator cuff muscle elasticity: Reliability and feasibility of shear wave elastography. , 2015, Journal of biomechanics.
[12] N. Ichihashi,et al. Association between walking ability and trunk and lower-limb muscle atrophy in institutionalized elderly women: a longitudinal pilot study , 2015, Journal of Physiological Anthropology.
[13] D. Brooks,et al. Skeletal muscle atrophy in advanced interstitial lung disease , 2015, Respirology.
[14] M. Herceg,et al. Optimizing stimulation parameters in functional electrical stimulation of denervated muscles: a cross-sectional study , 2015, Journal of NeuroEngineering and Rehabilitation.
[15] J. Sheehan,et al. Improved Neurological Outcome by Intramuscular Injection of Human Amniotic Fluid Derived Stem Cells in a Muscle Denervation Model , 2015, PloS one.
[16] Jean-Michel Correas,et al. Prostate cancer: diagnostic performance of real-time shear-wave elastography. , 2015, Radiology.
[17] Noriaki Ichihashi,et al. Acute effects of static stretching on muscle hardness of the medial gastrocnemius muscle belly in humans: an ultrasonic shear-wave elastography study. , 2014, Ultrasound in medicine & biology.
[18] Xiaoxi Li,et al. Diagnostic performance of shear wave elastography in the identification of malignant thyroid nodules: a meta-analysis , 2014, European Radiology.
[19] Pengfei Song,et al. Validation of shear wave elastography in skeletal muscle. , 2013, Journal of biomechanics.
[20] A. Bersten,et al. Alterations in Respiratory and Limb Muscle Strength and Size in Patients With Sepsis Who Are Mechanically Ventilated , 2013, Physical Therapy.
[21] Kevin J Parker,et al. Relationship between shear elastic modulus and passive muscle force: an ex-vivo study. , 2013, Journal of biomechanics.
[22] D. Thelen,et al. Length and activation dependent variations in muscle shear wave speed , 2013, Physiological measurement.
[23] M. Wiberg,et al. Regenerative cell injection in denervated muscle reduces atrophy and enhances recovery following nerve repair , 2013, Muscle & nerve.
[24] Lilian Lacourpaille,et al. Supersonic shear imaging provides a reliable measurement of resting muscle shear elastic modulus , 2012, Physiological measurement.
[25] B. Garra. Elastography: Current Status, Future Prospects, and Making It Work for You , 2011, Ultrasound quarterly.
[26] Thomas Deffieux,et al. On the elasticity of transverse isotropic soft tissues (L). , 2011, The Journal of the Acoustical Society of America.
[27] Zhenbing Chen,et al. Role of transforming growth factor-β1 in the process of fibrosis of denervated skeletal muscle , 2011, Journal of Huazhong University of Science and Technology [Medical Sciences].
[28] Hongliang Zheng,et al. Modulation of satellite cells in rat facial muscle following denervation and delayed reinnervation , 2010, Acta oto-laryngologica.
[29] M. Fink,et al. Real‐time visualization of muscle stiffness distribution with ultrasound shear wave imaging during muscle contraction , 2010, Muscle & nerve.
[30] M. Fink,et al. Viscoelastic and anisotropic mechanical properties of in vivo muscle tissue assessed by supersonic shear imaging. , 2010, Ultrasound in medicine & biology.
[31] Thomas Deffieux,et al. Shear Wave Spectroscopy for In Vivo Quantification of Human Soft Tissues Visco-Elasticity , 2009, IEEE Transactions on Medical Imaging.
[32] J. Dietemann,et al. Diffusion-weighted MRI of denervated muscle: a clinical and experimental study , 2008, Skeletal Radiology.
[33] B. Garra. Imaging and Estimation of Tissue Elasticity by Ultrasound , 2007, Ultrasound quarterly.
[34] Mathias Fink,et al. Human muscle hardness assessment during incremental isometric contraction using transient elastography. , 2005, Journal of biomechanics.
[35] C. Wessig,et al. Muscle magnetic resonance imaging of denervation and reinnervation: correlation with electrophysiology and histology , 2004, Experimental Neurology.
[36] Y. Toyama,et al. MR imaging in the diagnosis of denervated and reinnervated skeletal muscles: experimental study in rats. , 2003, Radiology.
[37] Mathias Fink,et al. Transient elastography in anisotropic medium: application to the measurement of slow and fast shear wave speeds in muscles. , 2003, The Journal of the Acoustical Society of America.
[38] M. Koltzenburg,et al. Visualization of denervated muscle by gadolinium-enhanced MRI , 2001, Neurology.
[39] B. Carlson,et al. Interrelations of myogenic response, progressive atrophy of muscle fibers, and cell death in denervated skeletal muscle , 2001, The Anatomical record.
[40] D. Lu,et al. Quantitative study of the effects of long‐term denervation on the extensor digitorum longus muscle of the rat , 1997, The Anatomical record.
[41] B. Carlson,et al. Electron microscopic study of long‐term denervated rat skeletal muscle , 1997, The Anatomical record.
[42] P. Rosenthal,et al. Ultrasound elastography: is there a shear wave speed cutoff for pediatric liver fibrosis and inflammation? , 2017, Clinical imaging.
[43] Sabrina S. M. Lee,et al. Use of shear wave ultrasound elastography to quantify muscle properties in cerebral palsy. , 2016, Clinical biomechanics.
[44] J. Dietemann,et al. Diffusion-weighted MRI, dynamic susceptibility contrast MRI and ultrasound perfusion quantification of denervated muscle in rabbits , 2011, Skeletal Radiology.
[45] W. Mayr,et al. Atrophy, but not necrosis, in rabbit skeletal muscle denervated for periods up to one year. , 2007, American journal of physiology. Cell physiology.