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Temperature changes in the human leg during and after two methods of cryotherapy.人体腿部在两种冷冻疗法过程中和之后的温度变化。
J Athl Train. 1998 Jan;33(1):25-9.
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Cooling does not affect knee proprioception.冷却不会影响膝关节本体感觉。
J Athl Train. 1996 Jan;31(1):8-11.
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Agility following the application of cold therapy.应用冷疗后的敏捷性。
J Athl Train. 1995 Sep;30(3):231-4.
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The effects of ice and compression wraps on intramuscular temperatures at various depths.冰袋和加压包扎对不同深度肌内温度的影响。
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Peripheral mechanisms of touch and proprioception.触觉与本体感觉的外周机制。
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Effect of temperature on muscle force and rate of muscle force production in men and women.温度对男性和女性肌肉力量及肌肉力量产生速率的影响。
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Nerve conduction velocity: relationship of skin, subcutaneous and intramuscular temperatures.神经传导速度:皮肤、皮下组织及肌肉温度之间的关系
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Sensorimotor mechanisms in weight discrimination.重量辨别中的感觉运动机制。
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局部降温对股四头肌本体感觉敏锐度的影响。

Influence of Local Cooling on Proprioceptive Acuity in the Quadriceps Muscle.

作者信息

Tremblay François, Estephan Lorein, Legendre Martine, Sulpher Stéphanie

机构信息

Faculty of Health Sciences, University of Ottawa, Ottawa, Ontario, Canada.

出版信息

J Athl Train. 2001 Jun;36(2):119-123.

PMID:12937450
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC155520/
Abstract

OBJECTIVE

To test the influence of cooling on proprioceptive acuity as reflected in the ability to discriminate weights. DESIGN AND SETTING: Participants were trained to perform a weight-discrimination task. Their ability to correctly report small increments in weight was compared before and after local cooling (a 20-minute application of a crushed-ice pack) of the quadriceps muscle group. Data were collected at a university research laboratory. SUBJECTS: Twenty young, physically active adults (undergraduate students; 14 men, 6 women; mean age, 22.1 +/- 2.6 years). MEASUREMENTS: We calculated overall performance in the weight-discrimination task (percentage of discrimination correct) for each participant to estimate the differential threshold (ie, minimal increment in weight that yields a probability of 75% correct responses). RESULTS: Before local cooling, participants discriminated increments in the order of 4% to 10% from the standard weight (mean threshold, 0.17 +/- 0.06 kg). After local cooling, the discriminative performance remained, on average, very similar to that seen before cooling (mean threshold, 0.17 +/- 0.08 kg; paired t test: t = 0.24, P =.81). Only a small group of participants (n = 5) showed evidence of a decreased ability to discriminate weight after cooling. CONCLUSIONS: The perception of force signals required for weight discrimination does not appear to be affected by local cooling of the quadriceps muscle group. This finding provides additional evidence for the relative safety of cold applications and their effect on proprioceptive perceptual abilities.

摘要

目的

通过辨别重量的能力来测试冷却对本体感觉敏锐度的影响。

设计与地点

参与者接受训练以执行重量辨别任务。在股四头肌组局部冷却(应用碎冰袋20分钟)前后,比较他们正确报告重量微小增加的能力。数据在大学研究实验室收集。

受试者

20名年轻、身体活跃的成年人(本科生;14名男性,6名女性;平均年龄22.1±2.6岁)。

测量

我们计算了每个参与者在重量辨别任务中的总体表现(辨别正确的百分比),以估计差异阈值(即产生75%正确反应概率的最小重量增加)。

结果

在局部冷却前,参与者能够辨别出比标准重量高4%至10%的重量增加(平均阈值为0.17±0.06千克)。局部冷却后,辨别表现平均而言与冷却前非常相似(平均阈值为0.17±0.08千克;配对t检验:t = 0.24,P = 0.81)。只有一小部分参与者(n = 5)在冷却后表现出辨别重量能力下降的迹象。

结论

重量辨别所需的力信号感知似乎不受股四头肌组局部冷却的影响。这一发现为冷敷的相对安全性及其对本体感觉感知能力的影响提供了额外证据。