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"Intraarticular temperature"

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"Intraarticular temperature"

Original Articles
Changes of Intraarticular Temperature in the Knee Joint according to the Application Method of Cold Jet-stream.
Kim, Tai Kon , Wang, Jun Keuk , Choi, Ki Seob , Park, Si Bog
J Korean Acad Rehabil Med 2005;29(4):413-418.
Objective
To investigate the changes of intraarticular temperature in the knee according to the application methods of cold jet-stream and to find the more effective method which reduces the intraarticular temperature. Method: Fifteen healthy subjects were examined. We recorded both skin and intraarticular temperature of the knee for 120 minutes. We compared two different cooling methods using ⁣30oC cold jet-stream by CRAis (Century, Korea). The first was the intermittent cold jet-stream application method (ICA) which applied cold jet-stream to the knee joint every other minute for 5 minutes and the second was the continuous cold jet-stream application method with infrared (CCAI) for 5 minutes. Results: In ICA, the intraarticular temperature maximally dropped as 1.7⁑0.6oC (p<0.01) and it took 28.7⁑18.9 minutes. Intraarticular temperature dropped 0.6⁑0.5oC after 2 hour (p<0.05). In CCAI, the intraarticular temperature maximally dropped as 2.8⁑0.7oC (p<0.01) and it took 38.0⁑24.6 minutes, intraarticular temperature after 2 hour dropped as 1.36⁑0.75oC (p<0.05). According to the two methods, CCAI showed more reduction in the lowest and after 2 hour intraarticular temperature compared with ICA in the knee joint (p<0.05). Conclusion: CCAI is better for reducing the intraarticular temperature than ICA. (J Korean Acad Rehab Med 2005; 29: 413-418)
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The Effect of Cold Air Application for the Intraarticular and Skin Temperature Changes of Knees.
Baek, Seung Sug , Choi, Ki Sub , Park, Si Bog , Lee, Sang Gun , Kim, Young Ho , Yang, Gil Tae , Chang, Yun Hee
J Korean Acad Rehabil Med 1998;22(2):299-304.

The purposes of this study are to investigate the effect of the cold air application in the skin and intraarticular temperature changes and to observe the rebound temperature changes after cooling.

We recorded the changes of the skin surface and intraarticular temperatures of knees during and after the cold air application. The intraarticular temperature was measured by a temperature probe inserted into the knee joint cavity and the skin temperature by the infrared system. Eighteen healthy subjects were examined. The knee was cooled by a 5-minutes application of CRAis (Kyung-won Century, Korea) machine and the intraarticular and skin temperatures of knees were measured at every 0.5-minute during and after the cold therpy, then at every minute for 5 minutes, and every 5-minute for the next 110 minutes. We also evaluated the variables that might affect the skin and intraarticular temperature changes.

Results showed that the mean skin temperature dropped from 31.8℃ to 10.5℃ immediately after the cold air application for 5-minutes. The mean intraarticular temperature dropped from 33.9℃ to 30.0℃ after the cold air application for 5-minutes. Two hours after the initiation of treatment with cold air, the mean intraarticular temperatures did not recover to the baseline values(p<0.01). No significant correlations were found between the body mass index with the intraarticular and surface temperatures of knees. A highly significant correlation was noted between the baseline skin surface and intraarticular temperatures(p<0.01).

In conclusion, the reduction of the joint temperature by the cold air application using CRAis machine can be a useful treatment method for the synovitis of knees.

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