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1.
Journal of Acupuncture and Tuina Science ; (6): 278-283, 2021.
Artigo em Chinês | WPRIM | ID: wpr-912867

RESUMO

According to Chinese medicine, the atlantoaxial joint is a composite joint composed of tendons and bones, and the stability of the joint depends on the 'tendon-bone balance' involving tendons, ligaments, atlas and axis. Multiple causes of 'tendon off-position, joint subluxation' will lead to joint 'tendon-bone imbalance', which will evolve into atlantoaxial subluxation (AAS), endangering human health. Chinese therapeutic massage (tuina) is a very effective treatment for AAS in adults, but conventional manipulations are prone to ineffectiveness or accidents due to neglect of the causal relationship of the 'tendon-bone imbalance' and inappropriate manipulations. Compared with conventional manipulations, the rational choice of modified manipulations under the guidance of 'tendon-bone balance' theory is more effective and less risky, and more worthy of clinical promotion. From the 'tendon-bone balance' theory, we considered the shortcomings of conventional manipulations, and introduced several modified manipulations that have their own strengths in 'tendon smoothing' and 'bone setting', in order to provide new ideas for treatment of AAS in adults.

2.
Journal of Medical Biomechanics ; (6): E275-E278, 2013.
Artigo em Chinês | WPRIM | ID: wpr-804294

RESUMO

Objective To analyze mechanical properties of cervical spine manipulation with fine adjustment, so as to provide mechanical data for popularization of such manipulation in clinic. Methods The founder, a skilled practitioner and a beginner of fine-adjusting manipulation operated the spinal fine-adjusting manipulation on two cervical vertebral segments of healthy subjects, respectively. The force data of thumbs were collected by FingerTPS Wireless System to analyze force differences between two thumbs while the force of right thumb was in its peak value, as well as regular pattern of the thumb force in relation with time. Results Significant differences were found between the maximum force of two thumbs in each subject (P<0.001). The process of force application (from trough to peak, T1) was longer than that of force reduction (from peak to trough, T2) when all the subjects operated spinal fine-adjusting manipulation, showing significant differences (P<0.001). Conclusions There exists the main and auxiliary hand during cervical spine manipulation with fine adjustment, which is actually a process of slow force application and rapid force reduction.

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