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犬肌肉电刺激(时值)冲动持续时间阈值的评估。

Assessment of impulse duration thresholds for electrical stimulation of muscles (chronaxy) in dogs.

作者信息

Sawaya Serge G, Combet Delphine, Chanoit Guillaume, Thiebault Jean-Jacques, Levine David, Marcellin-Little Denis J

机构信息

Unité Physiothérapie-Rééducation-Ostéopathie-USP 2007-03-135 RTI2B, Ecole Nationale Vétérinarire de Lyon, Université de Lyon, 69365 Lyon Cedex, Marcy l'Etoile, France.

出版信息

Am J Vet Res. 2008 Oct;69(10):1305-9. doi: 10.2460/ajvr.69.10.1305.

Abstract

OBJECTIVE

To determine the electrical impulse duration thresholds (chronaxy) for maximal motor contraction of various muscles without stimulation of pain fibers in dogs.

ANIMALS

10 healthy adult Beagles.

PROCEDURES

The dogs were used to assess the minimal intensity (rheobase) required to elicit motor contraction of 11 muscles (5 in the forelimb [supraspinatus, infraspinatus, deltoideus, lateral head of the triceps brachii, and extensor carpi radialis], 5 in the hind limb [gluteus medius, biceps femoris, semitendinosus, vastus lateralis, and tibialis cranialis], and the erector spinae). The rheobase was used to determine the chronaxy for each of the 11 muscles in the 10 dogs; chronaxy values were compared with those reported for the corresponding muscles in humans.

RESULTS

Compared with values in humans, chronaxy values for stimulation of AA motor fibers in the biceps femoris and semitendinosus muscles and muscles of the more distal portions of limbs were lower in dogs. For the other muscles evaluated, chronaxy values did not differ between dogs and humans.

CONCLUSIONS AND CLINICAL RELEVANCE

Application of the dog-specific chronaxy values when performing electrical stimulation for strengthening muscles or providing pain relief is likely to minimize the pain perceived during treatment in dogs.

摘要

目的

确定在不刺激犬类痛觉纤维的情况下,引起各种肌肉最大运动收缩的电冲动持续时间阈值(时值)。

动物

10只健康成年比格犬。

步骤

使用这些犬评估引起11块肌肉运动收缩所需的最小强度(基强度)(前肢5块[冈上肌、冈下肌、三角肌、肱三头肌外侧头和桡侧腕伸肌],后肢5块[臀中肌、股二头肌、半腱肌、股外侧肌和胫骨前肌],以及竖脊肌)。用基强度确定10只犬的11块肌肉各自的时值;将时值与人类相应肌肉的报告值进行比较。

结果

与人类的值相比,犬的股二头肌、半腱肌以及四肢更远端肌肉中AA运动纤维刺激的时值较低。对于评估的其他肌肉,犬和人类的时值没有差异。

结论及临床意义

在进行电刺激以增强肌肉或缓解疼痛时,应用犬特异性时值可能会使犬在治疗期间感受到的疼痛最小化。

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