Muscle Temperature Is Affected by Overlying Adipose When Cryotherapy Is Administered
- PMID: 12937512
- PMCID: PMC155399
Muscle Temperature Is Affected by Overlying Adipose When Cryotherapy Is Administered
Abstract
OBJECTIVE: To investigate the relationship between the amount of overlying adipose and intramuscular temperature change during and after a 20-minute crushed-ice pack treatment. DESIGN AND SETTING: Subjects were divided into 3 equal groups according to calf skinfold thickness: 8 mm or less, 10 to 18 mm, and 20 mm or greater. Intramuscular temperature was monitored at 1 cm and 3 cm below the subcutaneous fat in the left medial calf during and after a 1.8-kg crushed-ice pack treatment. SUBJECTS: Thirty uninjured college students volunteered to be subjects. MEASUREMENTS: Intramuscular temperature was recorded every 10 seconds over a 20-minute treatment and for 30 minutes posttreatment. RESULTS: Intramuscular temperature decreases between adipose groups at the end of treatment at both 1 cm and 3 cm below the subcutaneous fat were significantly different. At 1 cm within the muscle, the temperature decreases were 14.43 degrees C, 9.06 degrees C, and 5.00 degrees C for 8-mm or less, 10- to 18-mm, and 20-mm or greater skinfolds, respectively. At 3 cm, temperatures were 6.22 degrees C, 3.86 degrees C, and 2.42 degrees C, respectively. By 30 minutes posttreatment at 1 cm, the 8-mm or less and 10- to 18-mm groups rewarmed 5.39 degrees C and 2.22 degrees C, respectively, but the 20-mm or greater group was 0.49 degrees C colder than at the conclusion of the treatment. At 3 cm, temperatures in all 3 groups were colder at 30 minutes posttreatment than they were at the end of the treatment, 1.63 degrees C, 1.83 degrees C, and 2.10 degrees C for 8-mm or less, 10- to 18-mm, and 20-mm or greater skinfolds, respectively. CONCLUSIONS: The amount of adipose over the therapy site is a significant factor in the extent of intramuscular temperature change that occurs during and after cryotherapy. Adipose should, therefore, be taken into account in determining appropriate treatment protocols.
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References
-
- Meeusen R, Lievens P. The use of cryotherapy in sports injuries. Sports Med. 1986;3:398–414. - PubMed
-
- Swenson C, Sward L, Karlsson J. Cryotherapy in sports medicine. Scand J Med Sci Sports. 1996;6:193–200. - PubMed
-
- Barnes L. Cryotherapy—putting injury on ice. Physician Sportsmed. 1979;7(6):130–136. - PubMed
-
- Grant AE. Massage with ice (cryokinetics) in treatment of painful conditions of the musculoskeletal system. Arch Phys Med Rehabil. 1964;45:233–238. - PubMed
-
- Hayden CA. Cryokinetics in an early treatment program. J Am Phys Ther Assoc. 1964;44:990–993. - PubMed
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