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胫骨功能以及来自多个运动项目的二级男女大学生运动员。

Tibia functionality and Division II female and male collegiate athletes from multiple sports.

作者信息

Yingling Vanessa R, Ferrari-Church Benjamin, Strickland Ariana

机构信息

Department of Kinesiology, California State University, East Bay, Hayward, CA, United States of America.

出版信息

PeerJ. 2018 Sep 11;6:e5550. doi: 10.7717/peerj.5550. eCollection 2018.

Abstract

BACKGROUND

Bone strength is developed through a combination of the size and shape (architecture) of a bone as well as the bone's material properties; and therefore, no one outcome variable can measure a positive or negative adaptation in bone. Skeletal robusticity (total area/ bone length) a measure of bones external size varies within the population and is independent of body size, but robusticity has been associated with bone strength. Athletes may have similar variability in robusticity values as the general population and thus have a wide range of bone strengths based on the robustness of their bones. Therefore, the purpose of this study was to determine if an athlete's bone strength and cortical area relative to body size was dependent on robusticity. The second aim was to determine if anthropometry or muscle function measurements were associated with bone robusticity.

METHODS

Bone variables contributing to bone strength were measured in collegiate athletes and a reference group using peripheral quantitative computed tomography (pQCT) at the 50% tibial site. Bone functionality was assessed by plotting bone strength and cortical area vs body size (body weight x tibial length) and robustness (total area/length) vs body size. Bone strength was measured using the polar strength-strain index (SSIp). Based on the residuals from the regression, an athlete's individual functionality was determined, and two groups were formed "weaker for size" (WS) and "stronger for size" (SS). Grip strength, leg extensor strength and lower body power were also measured.

RESULTS

Division II athletes exhibited a natural variation in (SSIp) relative to robusticity consistent with previous studies. Bone strength (SSIp) was dependent on the robusticity of the tibia. The bone traits that comprise bone strength (SSIp) were significantly different between the SS and WS groups, yet there were minimal differences in the anthropometric data and muscle function measures between groups. A lower percentage of athletes from ball sports were "weaker for size" (WS group) and a higher percentage of swimmers were in the WS group.

DISCUSSION

A range of strength values based on robusticity occurs in athletes similar to general populations. Bones with lower robusticity (slender) were constructed with less bone tissue and had less strength. The athletes with slender bones were from all sports including track and field and ball sports but the majority were swimmers.

CONCLUSIONS

Athletes, even after optimal training for their sport, may have weaker bones based on robusticity. Slender bones may therefore be at a higher risk for fracture under extreme loading events but also yield benefits to some athletes (swimmers) due to their lower bone mass.

摘要

背景

骨强度是由骨骼的大小和形状(结构)以及骨骼的材料特性共同决定的;因此,没有一个单一的结果变量能够衡量骨骼的正向或负向适应性变化。骨骼粗壮度(总面积/骨长度)是衡量骨骼外部大小的指标,在人群中存在差异,且与体型无关,但粗壮度与骨强度相关。运动员的粗壮度值可能与普通人群具有相似的变异性,因此,基于骨骼的粗壮程度,他们的骨强度范围也较广。因此,本研究的目的是确定运动员相对于体型的骨强度和皮质面积是否取决于粗壮度。第二个目的是确定人体测量学指标或肌肉功能测量值是否与骨骼粗壮度相关。

方法

使用外周定量计算机断层扫描(pQCT)在胫骨50%部位测量大学生运动员和对照组中对骨强度有贡献的骨变量。通过绘制骨强度和皮质面积与体型(体重×胫骨长度)以及粗壮度(总面积/长度)与体型的关系图来评估骨功能。使用极向强度应变指数(SSIp)测量骨强度。根据回归残差确定运动员的个体功能,并形成两组:“相对于体型较弱”(WS)组和“相对于体型较强”(SS)组。还测量了握力、腿部伸肌力量和下肢功率。

结果

与先前研究一致,二级运动员的(SSIp)相对于粗壮度表现出自然变异。骨强度(SSIp)取决于胫骨的粗壮度。构成骨强度(SSIp)的骨特征在SS组和WS组之间存在显著差异,但两组之间的人体测量数据和肌肉功能测量差异极小。球类运动项目的运动员中,“相对于体型较弱”(WS组)的比例较低,而游泳运动员中WS组的比例较高。

讨论

与普通人群类似,运动员中也存在基于粗壮度的一系列强度值。粗壮度较低(较细长)的骨骼所含骨组织较少,强度也较低。骨骼细长的运动员来自包括田径和球类运动在内的所有运动项目,但大多数是游泳运动员。

结论

即使经过针对其运动项目的最佳训练,运动员基于粗壮度可能仍有较弱骨骼。因此,细长骨骼在极端负荷情况下可能骨折风险更高,但由于其较低的骨量,对一些运动员(游泳运动员)也有好处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e51/6138042/3e160e39bd85/peerj-06-5550-g001.jpg

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