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1
Temperature changes during therapeutic ultrasound in the precooled human gastrocnemius muscle.治疗超声作用于预冷却人体比目鱼肌时的温度变化。
J Athl Train. 1994 Dec;29(4):325-7.
2
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引用本文的文献

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Short-Term Thermal Effect of Continuous Ultrasound from 3 MHz to 1 and 0.5 W/cm Applied to Gastrocnemius Muscle.连续超声以3兆赫兹频率、1和0.5瓦/平方厘米的强度施加于腓肠肌的短期热效应
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Therapeutic ultrasound: myths and truths for non-portable in-clinic and portable home use ultrasound.治疗性超声:非便携式诊所超声和便携式家用超声的误区与真相
MOJ Sports Med. 2020;4(4):115-116. Epub 2020 Nov 2.
3
The inclusion of vibration therapy in rehabilitating a gastrocnemius tear: a case study in master athlete.振动疗法在修复腓肠肌撕裂中的应用:一名优秀运动员的案例研究
J Phys Ther Sci. 2019 Sep;31(9):738-742. doi: 10.1589/jpts.31.738. Epub 2019 Sep 5.
4
Blisters on the anterior shin in 3 research subjects after a 1-MHz, 1.5-W/cm , continuous ultrasound treatment: a case series.3名研究对象在接受1兆赫、1.5瓦/平方厘米的连续超声治疗后,胫前出现水疱:病例系列报告
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Effect of coupling medium temperature on rate of intramuscular temperature rise using continuous ultrasound.连续超声作用下耦合剂温度对肌肉温升速率的影响。
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6
Temperature rise in human muscle during ultrasound treatments using flex-all as a coupling agent.在使用 flex-all 作为耦合剂的超声治疗中,人体肌肉的温升。
J Athl Train. 1998 Apr;33(2):136-40.
7
Hot-Pack and 1-MHz Ultrasound Treatments Have an Additive Effect on Muscle Temperature Increase.热包裹和 1MHz 超声波治疗可使肌肉温度升高产生叠加效应。
J Athl Train. 1998 Jan;33(1):21-4.
8
Rate of Temperature Decay in Human Muscle Following 3 MHz Ultrasound: The Stretching Window Revealed.3 MHz 超声作用后人体肌肉温度衰减率:拉伸窗口揭示。
J Athl Train. 1995 Oct;30(4):304-7.

本文引用的文献

1
Advantages and limitations of ultrasonics in medicine.超声在医学中的优点和局限性。
J Am Med Assoc. 1952 May 10;149(2):121-5. doi: 10.1001/jama.1952.02930190023006.
2
Introduction to clinical application of ultrasound.超声临床应用介绍
Phys Ther Rev (1948). 1955 Jan;35(1):19-25. doi: 10.1093/ptj/35.1.19.
3
A comparison of temperature rise in human calf muscles following applications of underwater and topical gel ultrasound.水下超声和局部凝胶超声应用后人体小腿肌肉温度升高的比较。
J Orthop Sports Phys Ther. 1993 May;17(5):247-51. doi: 10.2519/jospt.1993.17.5.247.
4
Ultrasound: evaluation of its mechanical and thermal effects.超声:对其机械效应和热效应的评估
Arch Phys Med Rehabil. 1984 May;65(5):223-7.
5
Selective heating effects of ultrasound in human beings.超声对人体的选择性热效应。
Arch Phys Med Rehabil. 1966 Jun;47(6):331-9.
6
Physiological effects of ultrasonic energy as it is used clinically.超声能量在临床应用中的生理效应。
Phys Ther. 1966 Jan;46(1):18-26. doi: 10.1093/ptj/46.1.18.
7
Heating produced by ultrasound in bone and soft tissue.超声在骨骼和软组织中产生的热量。
Arch Phys Med Rehabil. 1967 Aug;48(8):397-401.
8
Temperatures in human thighs after hot pack treatment followed by ultrasound.热敷治疗后接着进行超声检查时人体大腿的温度
Arch Phys Med Rehabil. 1978 Oct;59(10):472-5.

治疗超声作用于预冷却人体比目鱼肌时的温度变化。

Temperature changes during therapeutic ultrasound in the precooled human gastrocnemius muscle.

机构信息

Stephanie J. Rimington is Head Athletic Trainer at Clovis High School, 1055 Fowler Avenue, Clovis, CA 93611-2099.

出版信息

J Athl Train. 1994 Dec;29(4):325-7.

PMID:16558295
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1317807/
Abstract

Therapeutic ultrasound is frequently employed as a deep heating rehabilitation modality. It is administered in one of three ways: a) ultrasound with no preceding treatment, b) ultrasound on preheated tissues, or c) ultrasound on precooled tissues. The purpose of this study was to investigate the effect of ultrasound treatments on the tissue temperature rise of precooled human gastrocnemius muscle. Sixteen male subjects had a 23-gauge hypodermic needle microprobe inserted 3 cm deep into the medial aspect of their anesthetized gastrocnemius muscles. Data were gathered on each subject for one of two randomly assigned treatments: a) ultrasound treatment on precooled tissue, or b) ultrasound with no preceding treatment. Each treatment consisted of ultrasound delivered topically at 1.5 watts/cm(2) in a continuous mode for 10 minutes. Ultrasound was applied in an overlapping longitudinal motion at 4 cm/s, with temperature readings recorded at 30-second intervals. We discovered a difference between the two treatment methods [t(14) = 16.26, p < .0001]. Ultrasound alone increased tissue temperature an average of 2 degrees C, whereas ultrasound preceded by 15 minutes of ice did not increase tissue temperature even to the original baseline level. We concluded that, at a depth of 3 cm, ultrasound alone provided a greater heating effect than ultrasound preceded by an ice treatment.

摘要

治疗超声经常被用作深层加热康复模式。它以三种方式之一进行施用:a)没有预先治疗的超声,b)在预热组织上的超声,或 c)在预冷却组织上的超声。本研究的目的是研究超声处理对预冷却人体比目鱼肌组织温度升高的影响。16 名男性受试者将 23 号皮下注射微探针插入其麻醉的比目鱼肌内侧 3 厘米深处。对每个受试者的数据进行了两种随机分配处理之一的收集:a)在预冷却组织上进行超声处理,或 b)无先前处理的超声。每种处理都包括以 1.5 瓦/平方厘米(2)的连续模式在 10 分钟内进行局部超声治疗。超声以 4 厘米/秒的重叠纵向运动施加,每隔 30 秒记录一次温度读数。我们发现两种处理方法之间存在差异 [t(14) = 16.26,p <.0001]。单独的超声平均将组织温度升高了 2 摄氏度,而在冰预处理 15 分钟之前进行的超声甚至没有将组织温度升高到原始基线水平。我们得出结论,在 3 厘米的深度,单独的超声比在冰预处理之前进行的超声提供了更大的加热效果。