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传统整脊治疗失败后,采用整脊生物物理学(CBP)镜像法治疗青少年进行性胸腰椎特发性脊柱侧弯:一例报告

Reduction of progressive thoracolumbar adolescent idiopathic scoliosis by chiropractic biophysics (CBP) mirror image methods following failed traditional chiropractic treatment: a case report.

作者信息

Haggard Joshua S, Haggard Jennifer B, Oakley Paul A, Harrison Deed E

机构信息

Private Practice, USA.

Private Practice: 11A-1100 Gorham Street, Newmarket, ON, L3Y 8Y8, Canada.

出版信息

J Phys Ther Sci. 2017 Nov;29(11):2062-2067. doi: 10.1589/jpts.29.2062. Epub 2017 Nov 24.

Abstract

[Purpose] To present a case demonstrating the reduction of progressive thoracolumbar scoliosis by incorporating Chiropractic BioPhysics (CBP) technique's mirror image exercises, traction and blocking procedures based on the 'non-commutative properties of finite rotation angles under addition' engineering law. [Subject and Methods] A 15-year-old female presented with a right thoracolumbar scoliosis having a Cobb angle from T5-L3 of 27° and suffering from headaches and lower back pains. Her curve had progressed over the last two years despite being under traditional chiropractic care. [Results] The patient was treated using CBP structural rehabilitation protocols incorporating mirror image traction, home blocking, corrective exercises and spinal manipulation. The patient was treated 24 times (including 45 home self-treatment blocking sessions) over the course of 15-weeks. Her thoracolumbar curve reduced from 27° to 8° and her headache and low back pain disability improved significantly. [Conclusion] CBP mirror image exercises and traction are consistent with other successful non-surgical approaches and show promise in treating adolescent idiopathic scoliosis.

摘要

[目的] 呈现一个病例,展示通过结合脊椎矫正生物物理学(CBP)技术的镜像练习、牵引和基于“加法下有限旋转角度的非交换性质”工程定律的阻滞程序来减少进行性胸腰椎侧弯。[对象与方法] 一名15岁女性,患有胸腰椎右侧侧弯,T5 - L3节段的Cobb角为27°,伴有头痛和下背部疼痛。尽管接受了传统脊椎矫正治疗,但在过去两年中她的侧弯仍有进展。[结果] 患者采用CBP结构康复方案进行治疗,包括镜像牵引、家庭阻滞、矫正练习和脊柱手法治疗。在15周的疗程中,患者接受了24次治疗(包括45次家庭自我治疗阻滞疗程)。她的胸腰椎侧弯从27°减小到8°,头痛和下背部疼痛残疾状况显著改善。[结论] CBP镜像练习和牵引与其他成功的非手术方法一致,在治疗青少年特发性侧弯方面显示出前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b38/5702847/79d59ac1821b/jpts-29-2062-g001.jpg

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