Electrotherapy
This article needs more reliable medical references for verification or relies too heavily on primary sources. (February 2009) |
Electrotherapy | |
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MeSH | D004599 |
Electrotherapy is the use of electrical energy as a medical treatment.[1] In medicine, the term electrotherapy can apply to a variety of treatments, including the use of electrical devices such as deep brain stimulators for neurological disease. The term has also been applied specifically to the use of electric current to speed wound healing. Additionally, the term "electrotherapy" or "electromagnetic therapy" has also been applied to a range of alternative medical devices and treatments.
Medical uses
Electrotherapy is primarily used in physical therapy for relaxation of muscle spasms, prevention and retardation of disuse atrophy, increase of local blood circulation, muscle rehabilitation and re-education electrical muscle stimulation, maintaining and increasing range of motion, management of chronic and intractable pain, post-traumatic acute pain, post-surgical acute pain, immediate post-surgical stimulation of muscles to prevent venous thrombosis, wound healing and drug delivery.[citation needed]
Some of the treatment effectiveness mechanisms are little understood, with effectiveness and best practices for their use still anecdotal.
Musculoskeletal conditions
In general, there is little evidence that electrotherapy is effective in the management of musculoskeletal conditions.[2] In particular, there is no evidence that electrotherapy is effective in the relief of pain arising from osteoarthritis,[3] and little to no evidence available to support electrotherapy for the management of fibromyalgia.[4]
Neck and back pain
A 2016 review found that, "in evidence of no effectiveness," clinicians should not offer electrotherapy for the treatment of neck pain or associated disorders.[5] Earlier reviews found that no conclusions could be drawn about the effectiveness of electrotherapy for neck pain,[6] and that electrotherapy has limited effect on neck pain as measured by clinical results.[7]
A 2015 review found that the evidence for electrotherapy in pregnancy-related lower back pain is "very limited".[8]
Shoulder disorders
A 2014 Cochrane review found insufficient evidence to determine whether electrotherapy was better than exercise at treating adhesive capsulitis.[9] As of 2004, there is insufficient evidence to draw conclusions about any intervention for rotator cuff pathology, including electrotherapy;[10] furthermore, methodological problems precluded drawing conclusions about the efficacy of any rehabilitation method for impingement syndrome.[11]
Other musculoskeletal disorders
There is limited, low quality evidence for a slight benefit of noxious-level electrotherapy in the treatment of epicondylitis. [12]
A 2012 review found that "Small, single studies showed that some electrotherapy modalities may be beneficial" in rehabilitating ankle bone fractures. [13] However, a 2008 review found it to be ineffective in healing long-bone fractures.[14]
A 2012 review found that evidence that electrotherapy contributes to recovery from knee conditions is of "limited quality". [15]
Chronic pain
A 2004 Cochrane review found "weaker evidence" that pulsating electromagnetic fields could be effective in treating recurrent headaches.[16] A 2016 Cochrane review found that supporting evidence for electrotherapy as a treatment for complex regional pain syndrome is "absent or unclear."[17]
Chronic wounds
A 2015 review found that the evidence supporting the use of electrotherapy in healing pressure ulcers was of low quality,[18] and a 2015 Cochrane review found that no evidence that electromagnetic therapy, a subset of electrotherapy, was effective in healing pressure ulcers.[19] Earlier reviews found that, because of low-quality evidence, it was unclear whether electrotherapy increases healing rates of pressure ulcers.[20][21] By 2014 the evidence supported electrotherapy's efficacy for ulcer healing.[22]
Another 2015 Cochrane review found no evidence supporting the user of electrotherapy for venous stasis ulcers.[23]
History
The first recorded treatment of a patient by electricity was by Johann Gottlob Krüger in 1743. John Wesley promoted electrical treatment as a universal panacea in 1747 but was rejected by mainstream medicine. Giovanni Aldini treated insanity with static electricity 1823-1824.[24]
The first medical treatments with electricity in London have been recorded as far back as 1767 at Middlesex Hospital in London using a special apparatus. The same was purchased for St. Bartholomew's Hospital only ten years later. The record of uses other than being therapeutic is not clear, however Guy's Hospital has a published list of cases from the earlier 1800s.[25] Golding Bird at Guy's brought electrotherapy into the mainstream in the mid-19th century.[26] In the second half of the 19th century the emphasis moved from delivering large shocks to the whole body to more measured doses, the minimum effective.[27]
Apparatus
Electrotherapy equipment has historically included:
- The electric bath for high-voltage static induction
- Oudin coil, a high-voltage induction coil, in use around 1900
- Pulvermacher's chain, a wearable electrochemical device mostly used by quacks, in use second half of 19th century
- Leyden jars, an early form of capacitor, for storing electricity
- Electrostatic generators of various sorts
People
Some important people in the history of electrotherapy include;
- Luigi Galvani, a pioneer of medical electricity
- Benjamin Franklin, an early proponent of electrotherapy who made it widely known, but unfortunately mostly taken up by quacks and charlatans
- Golding Bird, mentioned above
- Duchenne de Boulogne
- Jacques-Arsène d'Arsonval
- George Miller Beard
- Margaret Cleaves, a promoter of ozone therapy
- Many of the forms of electricity used in electrotherapy were named after scientists
Notable historic fringe practitioners
Muscle stimulation
In 1856 Guillaume Duchenne announced that alternating was superior to direct current for electrotherapeutic triggering of muscle contractions.[28] What he called the 'warming effect' of direct currents irritated the skin, since, at voltage strengths needed for muscle contractions, they cause the skin to blister (at the anode) and pit (at the cathode). Furthermore, with DC each contraction required the current to be stopped and restarted. Moreover, alternating current could produce strong muscle contractions regardless of the condition of the muscle, whereas DC-induced contractions were strong if the muscle was strong, and weak if the muscle was weak.
Since that time almost all rehabilitation involving muscle contraction has been done with a symmetrical rectangular biphasic waveform. During the 1940s, however, the U.S. War Department, investigating the application of electrical stimulation not just to retard and prevent atrophy but to restore muscle mass and strength, employed what was termed galvanic exercise on the atrophied hands of patients who had an ulnar nerve lesion from surgery upon a wound.[29] These galvanic exercises employed a monophasic waveform, direct current.
The American Physical Therapy Association, a professional organization representing physical therapists, accepts the use of electrotherapy in the field of physical therapy.[30][31]
See also
- Alfred Charles Garratt
- Cranial electrotherapy stimulation
- Electrical brain stimulation
- Electroanalgesia
- Electroconvulsive therapy
- Electrotherapy (cosmetic)
- Galvanic bath
- Microcurrent electrical neuromuscular stimulator
- Transcranial magnetic stimulation
- Transcutaneous electrical nerve stimulation
References
- ^ Institute of Electrical and Electronics Engineers, "The IEEE standard dictionary of electrical and electronics terms". 6th ed. New York, N.Y., Institute of Electrical and Electronics Engineers, c1997. IEEE Std 100-1996. ISBN 1-55937-833-6 [ed. Standards Coordinating Committee 10, Terms and Definitions; Jane Radatz, (chair)]
- ^ Hurley MV, Bearne LM (2008). "Non-exercise physical therapies for musculoskeletal conditions". Best Practice & Research: Clinical Rheumatology. 22 (3): 419–33. doi:10.1016/j.berh.2008.01.001. PMID 18519097.
- ^ Sarzi-Puttini P, Cimmino MA, Scarpa R, Caporali R, Parazzini F, Zaninelli A, Atzeni F, Canesi B (2005). "Osteoarthritis: an overview of the disease and its treatment strategies". Seminars in Arthritis and Rheumatism. 35 (1 Suppl 1): 1–10. doi:10.1016/j.semarthrit.2005.01.013. PMID 16084227.
- ^ Sim J, Adams N (1999). "Physical and other non-pharmacological interventions for fibromyalgia". Baillière's Best Practice & Research: Clinical Rheumatology. 13 (3): 507–23. doi:10.1053/berh.1999.0041. PMID 10562382.
- ^ "Management of neck pain and associated disorders: A clinical practice guideline from the Ontario Protocol for Traffic Injury Management (OPTIMa) Collaboration". European Spine Journal. 25 (7): 2000–22. 2016. doi:10.1007/s00586-016-4467-7. PMID 26984876.
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ignored (help) - ^ Kroeling P, Gross A, Graham N, Burnie SJ, Szeto G, Goldsmith CH, Haines T, Forget M (2013). "Electrotherapy for neck pain". The Cochrane Database of Systematic Reviews (8): CD004251. doi:10.1002/14651858.CD004251.pub5. PMID 23979926.
- ^ Borenstein DG (2007). "Chronic neck pain: how to approach treatment". Current Pain and Headache Reports. 11 (6): 436–9. doi:10.1007/s11916-007-0230-4. PMID 18173978.
- ^ Gutke A, Betten C, Degerskär K, Pousette S, Olsén MF (2015). "Treatments for pregnancy-related lumbopelvic pain: a systematic review of physiotherapy modalities". Acta Obstetricia et Gynecologica Scandinavica. 94 (11): 1156–67. doi:10.1111/aogs.12681. PMID 26018758.
- ^ Page MJ, Green S, Kramer S, Johnston RV, McBain B, Buchbinder R (2014). "Electrotherapy modalities for adhesive capsulitis (frozen shoulder)". The Cochrane Database of Systematic Reviews (10): CD011324. doi:10.1002/14651858.CD011324. PMID 25271097.
- ^ Grant HJ, Arthur A, Pichora DR (2004). "Evaluation of interventions for rotator cuff pathology: a systematic review". Journal of Hand Therapy. 17 (2): 274–99. doi:10.1197/j.jht.2004.02.013. PMID 15162111.
- ^ Michener LA, Walsworth MK, Burnet EN (2004). "Effectiveness of rehabilitation for patients with subacromial impingement syndrome: a systematic review". Journal of Hand Therapy. 17 (2): 152–64. doi:10.1197/j.jht.2004.02.004. PMID 15162102.
- ^ Dingemanse R, Randsdorp M, Koes BW, Huisstede BM (2014). "Evidence for the effectiveness of electrophysical modalities for treatment of medial and lateral epicondylitis: a systematic review". British Journal of Sports Medicine. 48 (12): 957–65. doi:10.1136/bjsports-2012-091513. PMID 23335238.
- ^ Lin CW, Donkers NA, Refshauge KM, Beckenkamp PR, Khera K, Moseley AM (2012). "Rehabilitation for ankle fractures in adults". The Cochrane Database of Systematic Reviews. 11: CD005595. doi:10.1002/14651858.CD005595.pub3. PMID 23152232.
- ^ Mollon B, da Silva V, Busse JW, Einhorn TA, Bhandari M (November 2008). "Electrical stimulation for long-bone fracture-healing: a meta-analysis of randomized controlled trials". The Journal of Bone and Joint Surgery. American Volume. 90 (11): 2322–30. doi:10.2106/JBJS.H.00111. PMID 18978400.
- ^ Button K, Iqbal AS, Letchford RH, van Deursen RW (2012). "Clinical effectiveness of knee rehabilitation techniques and implications for a self-care treatment model". Physiotherapy. 98 (4): 288–99. doi:10.1016/j.physio.2011.08.003. PMID 23122433.
- ^ Bronfort G, Nilsson N, Haas M, Evans R, Goldsmith CH, Assendelft WJ, Bouter LM (2004). "Non-invasive physical treatments for chronic/recurrent headache" (PDF). The Cochrane Database of Systematic Reviews (3): CD001878. doi:10.1002/14651858.CD001878.pub2. PMID 15266458. (Retracted, see doi:10.1002/14651858.cd001878.pub3 )
- ^ Smart KM, Wand BM, O'Connell NE (2016). "Physiotherapy for pain and disability in adults with complex regional pain syndrome (CRPS) types I and II" (PDF). The Cochrane Database of Systematic Reviews. 2: CD010853. doi:10.1002/14651858.CD010853.pub2. PMID 26905470.
- ^ Vélez-Díaz-Pallarés M, Lozano-Montoya I, Abraha I, Cherubini A, Soiza RL, O'Mahony D, Montero-Errasquín B, Cruz-Jentoft AJ (2015). "Nonpharmacologic interventions to heal pressure ulcers in older patients: an overview of systematic teviews (The SENATOR-ONTOP Series)". Journal of the American Medical Directors Association. 16 (6): 448–69. doi:10.1016/j.jamda.2015.01.083. PMID 25737261.
- ^ Aziz Z, Flemming K (2015). "Electromagnetic therapy for treating pressure ulcers" (PDF). Cochrane Database Syst Rev. 9 (9): CD002930. doi:10.1002/14651858.CD002930.pub6. PMID 26334539.
- ^ Reddy M (2011). "Pressure ulcers". BMJ Clinical Evidence. 2011. PMC 3217823. PMID 21524319.
- ^ Cullum N, Petherick E (2008). "Pressure ulcers". BMJ Clinical Evidence. 2008. PMC 2907959. PMID 19450317.
- ^ "Electrical stimulation vs. standard care for chronic ulcer healing: a systematic review and meta-analysis of randomised controlled trials". European Journal of Clinical Investigation. 44 (4): 429–40. April 2014. doi:10.1111/eci.12244. PMID 24456185.
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ignored (help) - ^ Aziz Z, Cullum N, Flemming K (2015). "Electromagnetic therapy for treating venous leg ulcers" (PDF). Cochrane Database of Systematic Reviews. 7 (7): CD002933. doi:10.1002/14651858.CD002933.pub6. PMC 6885063. PMID 26134172.
- ^ Chalovich, Joseph M, Franklinization: Early Therapeutic Use of Static Electricity, ScholarShip, East Carolina University, 23 January 2012
- ^ Steavenson, William Edward (1892). Medical electricity. Philadelphia: P. Blakiston, Son & Company. p. 3.
- ^ Morus, Iwan Rhys, Frankenstein's Children: Electricity, Exhibition, and Experiment in Early-nineteenth-century London, pp. 234-237, Princeton University Press, 1998 ISBN 0691059527
- ^ Chalovich, 36' 0"
- ^ Licht, Sidney Herman., "History of Electrotherapy", in Therapeutic Electricity and Ultraviolet Radiation, 2nd ed., ed. Sidney Licht, New Haven: E. Licht, 1967, Pp. 1-70.
- ^ Licht, "History of Electrotherapy"
- ^ Alon G et al. Electrotherapeutic Terminology in Physical Therapy; Section on Clinical Electrophysiology. Alexandria, VA: American Physical Therapy Association, 2005
- ^ Robinson AJ, Snyder-Mackler, L. Clinical electrophysiology: electrotherapy and electrophysiologic testing 3rd ed. Baltimore: Lippincott Williams & Wilkins, 2008;151-196, 198-237, 239-274