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http://dx.doi.org/10.20540/JIAPTR.2019.10.4.1889

Laboratory Experiments for the Force and Load with Pseudo-Dynamic Test: Ex-vivo Study for the Manual Therapy  

Choi, Wansuk (Department of Physical Therapy, International University of Korea)
Choi, Taeseok (Sol Korean Medicine, Korea Environment Development Health Institute)
Heo, Seoyoon (Department of Occupational Therapy, Kyungbok University)
Lee, Wooram (Department of Mechanical & Auto Engineering, International University of Korea)
Publication Information
Journal of International Academy of Physical Therapy Research / v.10, no.4, 2019 , pp. 1889-1896 More about this Journal
Abstract
Background: Because of the lack of accurate values for applied forces in manual therapy, manual therapists relies on the magnitude of the individual's perception during applying the force. However, excessive loading maneuvers carry risks for patients. Objective: To establish the relationship between the maximal force applied to swine skin with the specific region, sex, and baseline parameters of the subject. Design: Ex-vivo Study and laboratory Experimental research Methods: 3.5 kg of Korean pork sirloin that is a piece of swine was handled and it was set 3 dimensions; #A; #B; #C. Forty-seven participants who has no experience in physical therapy randomly carried out the experiment, indicated to push each place of the pressure spots with same posture and process under supervision from the instructor who has over 15 years of manual therapy, and we measured the pressure force in each time. Results: The biggest pressure force was recorded in spot #A, and #B was represented after #C. Pressure on #A showed certain statistic relation with height (r=.317, p<.05) and weight (r=.434, p<.01); pressure on #B showed certain relation which has statistical meaning with only height (r=.401, p<.01); pressure on #C emerged to have statistic relationship with height (r=.308, p<.05)and weight (r=.428, p<.01). The age aspect revealed relation with pressure on #A, #B and #C, but that was not statistically significant. Conclusions: It can be inferred that there is the most loss of pressure in the area where cartilage is like an island in the middle.
Keywords
Manipulation; Pressure force; Manual therapy;
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1 Inoue K, Hashimoto I, Shirai T, et al. Disinhibition of the somatosensory cortex in cervical dystonia-decreased amplitudes of high-frequency oscillations. Clin Neurophysiol. 2004;115(7):1624-30.   DOI
2 Brashear A, Watts MW, Marchetti A, et al. Duration of effect of botulinum toxin type A in adult patients with cervical dystonia: a retrospective chart review. Clin Ther. 2000;22(12):1516-24.   DOI
3 Yin CS, Lee YJ, Lee YJ. Meridian Yinyang Balance Treatment of Temporomandibular Joint Improves Cervical Spine Alignment in Spasmodic Torticollis Cases, a Medical Imaging Study. J PPKM. 2008;22(2):459-63.
4 Chaudhry H, Bukiet B, Findley T. Mathematical analysis of applied loads on skeletal muscles during manual therapy. J Am Osteopath Assoc. 2008;108(12):680-8.
5 Ward RC. Myofascial release concepts. Rational Manual Therapies. Baltimore, Md: Williams & Wilkins; 1993:223-41.
6 Plewes DB, Betty I, Urchuk S, et al. Visualizing tissue compliance with MR imaging. J Magn Reson Imaging. 1995;5(6):733-8.   DOI
7 Lewa CJ, De Certaines JD. Viscoelastic property detection by elastic displacement NMR measurements. J Magn Reson Imaging. 1996;6(4):652-6.   DOI
8 Kirstukas SJ, Backman JA. Physician-applied contact pressure and table force response during unilateral thoracic manipulation. J Manip Physiol Ther. 1999;22(5):269-79.   DOI
9 Snodgrass SJ, Rivett DA, Robertson VJ. Manual forces applied during posterior-to-anterior spinal mobilization: a review of the evidence. . J Manip Physiol Ther. 2006;29(4):316-29.   DOI
10 Shin H, Ahn HS. Adhesive, Friction, and Deformation Behaviors of Pig Skin under Various Exposure Times to Air. Tribol Lubr. 2014;30(1):36-45.   DOI
11 Choi DY, Nam HD, Kim KH. A Study on Estimation of Scoliosis using Electromyography Sensor. J KIEE. 2016;65(7):1231-5.   DOI
12 Mezaki T. Dystonia redefined as central nonparetic loss of control of muscle action: a concept including inability to activate muscles required for a specific movement, or 'negative dystonia'. Med hypotheses. 2007;69(6): 1309-12.   DOI