1)Sansone V, et al:Calcific tendinopathy of the shoulder:clinical perspectives into the mechanisms, pathogenesis, and treatment 2018;10:63-72
2)DePalma AF, et al:Long-term study of shoulder joints affected with and treated for calcific tendinitis. Clin Orthop 1961;20:61-72
3)庄本康治:物理療法学のグローバルスタンダードの理解と展開.理学療法学2013;40:583-588
4)Ebenbichler GR, et al:Ultrasound therapy for calcific tendinitis of the shoulder. N Engl J Med 1999;340:1533-1538
5)Orhan Z, et al:An experimental study on the application of extracorporeal shock waves in the treatment of tendon injuries:preliminary report. J Orthop Sci 2001;6:566-570
6)Wang CJ, et al:Shock wave-enhanced neovascularization at the tendon-bone junction:an experiment in dogs. J Foot Ankle Surg 2002;41:16-22
7)Wang FS, et al:Temporal and spatial expression of bone morphogenetic proteins in extracorporeal shock wave-promoted healing of segmental defect. Bone 2003;32:387-396
8)Hausdorf J, et al:Selective loss of unmyelinated nerve fibers after extracorporeal shockwave application to the musculoskeletal system. Neuroscience 2008;155:138-144
9)Hausdorf J, et al:Extracorporeal shockwave application to the distal femur of rabbits diminishes the number of neurons immunoreactive for substance P in dorsal root ganglia L5. Brain Res 2008;1207:96-101
10)Takahashi N, et al:Application of shock waves to rat skin decreases calcitonin gene-related peptide immunoreactivity in dorsal root ganglion neurons. Auton Neurosci 2003;107:81-84
11)Cacchio A, et al:Effectiveness of radial shock-wave therapy for calcific tendinitis of the shoulder:single-blind, randomized clinical study. Phys Ther 2006;86:672-682