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商业干套式冷冻疗法系统冷却马掌骨的疗效。

Efficacy of a commercial dry sleeve cryotherapy system for cooling the equine metacarpus.

机构信息

Department of Clinical Sciences, College of Veterinary Medicine, North Carolina State University, Raleigh, North Carolina, USA.

出版信息

Vet Surg. 2022 Oct;51(7):1070-1077. doi: 10.1111/vsu.13847. Epub 2022 Jul 14.

Abstract

OBJECTIVE

To determine the ability of a commercial cryotherapy system (Game Ready Equine) to cool the metacarpal subcutaneous tissue and the superficial digital flexor tendon (SDFT) in horses.

STUDY DESIGN

Experimental study.

ANIMALS OR SAMPLE POPULATION

Six healthy adult horses.

METHODS

Thermocouples were implanted into the metacarpal subcutaneous tissues and the SDFT of six horses. Two treatments (cryotherapy or cryotherapy with 5-50 mmHg intermittent compression) were randomly assigned to forelimbs and performed for 20 minutes. Temperatures were compared to the target range of 10-19°C and between groups.

RESULTS

Only one limb in the cryotherapy/compression group reached the target range after cryotherapy. Temperatures did not differ between treatment groups at time 0. Lowest temperatures achieved in the subcutaneous tissue (p = .0043) and SDFT (p = .005) were 4.9 and 7.6°C lower when intermittent compression was applied. Similarly, applying compression induced a maximum change in temperature of approximately 7.0°C in the subcutaneous tissue (p = .014) and 10.2°C in the SDFT (p = .0001).

CONCLUSION

The cryotherapy system did not cool equine subcutaneous tissue or SDFT to the target temperature range, except in one limb. Combining cryotherapy with intermittent compression did result in lower temperatures and a greater change in temperature of the subcutaneous tissue and SDFT.

CLINICAL SIGNIFICANCE

When using this cryotherapy system, the addition of intermittent compression should be considered to achieve lower temperatures and potentially greater reduction in inflammation. Further studies are warranted to determine the effect of longer treatment times, higher compression settings, and the optimal temperature for benefits in normal and diseased equine tissues.

摘要

目的

确定一种商业冷冻治疗系统(Game Ready Equine)冷却马掌皮下组织和指浅屈肌腱(SDFT)的能力。

研究设计

实验研究。

动物或样本群体

六匹健康成年马。

方法

将热电偶植入六匹马的掌皮下组织和 SDFT。将两种治疗方法(冷冻治疗或冷冻治疗加 5-50mmHg 间歇压缩)随机分配给前肢,并进行 20 分钟的治疗。将温度与 10-19°C 的目标范围进行比较,并在组间进行比较。

结果

仅在冷冻治疗/压缩组的一条肢体在冷冻治疗后达到目标范围。在 0 时刻,两组之间的温度没有差异。在皮下组织(p=0.0043)和 SDFT(p=0.005)中达到的最低温度分别低 4.9°C 和 7.6°C,当应用间歇压缩时。同样,应用压缩在皮下组织(p=0.014)和 SDFT(p=0.0001)中引起的最大温度变化约为 7.0°C 和 10.2°C。

结论

冷冻治疗系统除了一条肢体外,未能将马的皮下组织或 SDFT 冷却到目标温度范围。将冷冻治疗与间歇压缩相结合确实会导致更低的温度和更大的皮下组织和 SDFT 温度变化。

临床意义

当使用这种冷冻治疗系统时,应考虑添加间歇压缩以达到更低的温度,并有可能更大地减轻炎症。需要进一步的研究来确定更长的治疗时间、更高的压缩设置以及正常和患病马组织中获益的最佳温度的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/080e/9796254/def3d3b91945/VSU-51-1070-g004.jpg

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