Reflexology and Pain Management – Part 1
Pain is a fact of life, it is a necessary part of being human. Pain is a universal experience that serves the vital function of triggering avoidance.
Pain is not a simple sensory experience, it can occur even in the absence of tissue damage. It involves emotional, social and cognitive beliefs. The four pillars of pain include
- Peripheral nervous system or the movement system
- Autonomic system, composing the sympathetic, parasympathetic, hormonal and visceral systems
- Central nervous system
- Psycho-emotional aspects, such as stress, anxiety, fear, social life and memory of pain.
Physiological pain acts as a warning of actual or potential tissue damage and is usually transient. It may be accompanied by an increase in heart rate, blood pressure and temperature. Physiological pain of pathological origin results from tissue damage. Tissue damage causes the release of neurotransmitters into the bloodstream creating inflammation, which can produce redness, swelling, and heat and further enhance the pain experience. The area may also be sensitised, stimulating further neurochemical output and resulting in an ongoing cycle of pain – referred to as chronic pain.
A growing evidence base for reflexology in pain management. It is not yet fully understood how reflexology helps manage pain, although current opinion suggests it works on the neurological system through the release of endogenous opioids*.
So if you are in pain, why not book a reflexology treatment.
* Sources
Stephenson NLN and JA Dalton (2003). Using Reflexology for pain management; a review, Journal of Holistic Nursing 21(2) pg 179 – 191
Mackereth P (2005) An explanation of therapeutic outcomes of reflexology and relaxation interventions for people with multiple sclerosis, University of Mancherster
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- Innerfield I. The anti-inflammatory effect of parenterally administered proteases. Ann N Y Acad Sci. 1957 Aug 30;68(1):167-76; discussion 176-7.
- Miller et. Al. The effects of protease supplementation on skeletal muscle function and D.O.M.S. following downhill running. Journal of Sports Sciences 22, 365-372;2004.
- Taussig SJ The mechanism of the physiological action of bromelain Medical Hypotheses 1980; 6: 99-104
- Donaho C, Rylander C Proteolytic enzymes in athletic injuries: a double blind study of a new anti-inflammatory agent Delaware Medical Journal 1962; 34: 168-170.
- Cirelli MG Clinical experience with bromelains in proteolytic enzyme therapy of inflammation and edema Medical Times 1964; 92(9): 919-922.
- Taussig SJ, Batkin S Bromelain, the enzyme complex of pineapple and its clinical application Journal of Ethnopharmacology 1988; 22: 191-203.
- Atal CK, Zutshi U, Rao PG. Scientific evidence on the role of Ayurvedic herbals on bioavailability of drugs. J Ethnopharmacol. 1981 Sep;4(2):229-32.
- Velpandian T, Jasuja R, Bhardwaj RK, Jaiswal J, Gupta SK. Piperine in food: interference in the pharmacokinetics of phenytoin. Eur J Drug Metab Pharmacokinet. 2001 Oct-Dec;26(4):241-7.
- Miller et. Al. The effects of protease supplementation on skeletal muscle function and D.O.M.S. following downhill running. Journal of Sports Sciences 22, 365-372;2004.

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