Roukis T S, Scherer P R, Anderson C F
California College of Podiatric Medicine, San Francisco 94115, USA.
J Am Podiatr Med Assoc. 1996 Nov;86(11):538-46. doi: 10.7547/87507315-86-11-538.
The authors present a quantitative analysis of the effect that first ray position has on motion of the first metatarsophalangeal joint. A goniometer was constructed to measure the degrees of first metatarsophalangeal joint dorsiflexion with the first ray in three positions: weightbearing resting position, dorsiflexed 4 mm from the weightbearing resting position, and dorsiflexed 8 mm from the weightbearing resting position. First metatarsophalangeal joint dorsiflexion decreased 19% as the first ray was moved from the weightbearing resting position to 4 mm dorsiflexed, 19.3% as the first ray was moved from 4 mm dorsiflexed to 8 mm dorsiflexed, and 34.7% as the first ray was moved from the weightbearing resting position to 8 mm dorsiflexed. The biomechanical significance of decreased first metatarsophalangeal joint dorsiflexion that results from first ray dorsiflexion is discussed, and proposed bases for the pathomechanics of hallux abducto valgus and hallux rigidus deformities are presented.
作者对第一跖列位置对第一跖趾关节运动的影响进行了定量分析。构建了一个测角仪,用于测量第一跖趾关节在第一跖列处于三个位置时的背屈角度:负重静止位、从负重静止位背屈4毫米、从负重静止位背屈8毫米。当第一跖列从负重静止位移动到背屈4毫米时,第一跖趾关节背屈减少19%;当第一跖列从背屈4毫米移动到背屈8毫米时,第一跖趾关节背屈减少19.3%;当第一跖列从负重静止位移动到背屈8毫米时,第一跖趾关节背屈减少34.7%。文中讨论了因第一跖列背屈导致第一跖趾关节背屈减少的生物力学意义,并提出了拇外翻和僵硬性拇趾畸形病理力学的可能基础。