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基于身体成分成像的棒球投球手臂三维惯性参数计算及青少年投球手臂动力学的一种新型超重测量方法。

Baseball Pitching Arm Three-Dimensional Inertial Parameter Calculations From Body Composition Imaging and a Novel Overweight Measure for Youth Pitching Arm Kinetics.

作者信息

Jennings Dalton J, Reaves Scott K, Sklar Jeffrey, Brown Colin, McPhee John, Hazelwood Scott J, Klisch Stephen M

机构信息

Department of Biomedical Engineering, College of Engineering, California Polytechnic State University, San Luis Obispo, CA 93410.

Department of Food Science & Nutrition, College of Agriculture, Food, and Environmental Sciences, California Polytechnic State University, San Luis Obispo, CA 93410.

出版信息

J Biomech Eng. 2022 Apr 1;144(4). doi: 10.1115/1.4052890.

Abstract

Many baseball pitching studies have used inverse dynamics to assess throwing arm kinetics as high and repetitive kinetics are thought to be linked to pitching injuries. However, prior studies have not used participant-specific body segment inertial parameters (BSIPs), which are thought to improve analysis of high-acceleration motions and overweight participants. This study's objectives were to (1) calculate participant-specific BSIPs using dual energy X-ray absorptiometry (DXA) measures, (2) compare inverse dynamic calculations of kinetics determined by DXA-calculated BSIPs (full DXA-driven inverse dynamics) against kinetics using the standard inverse dynamics approach with scaled BSIPs (scaled inverse dynamics), and (3) examine associations between full DXA-driven kinetics and overweight indices: body mass index (BMI) and segment mass index (SMI). Eighteen participants (10-11 years old) threw 10 fastballs that were recorded for motion analysis. DXA scans were used to calculate participant-specific BSIPs (mass, center of mass, radii of gyration) for each pitching arm segment (upper arm, forearm, hand), BMI, and SMI. The hypotheses were addressed with t-tests and linear regression analyses. The major results were that (1) DXA-calculated BSIPs differed from scaled BSIPs for each pitching arm segment; (2) calculations for shoulder, but not elbow, kinetics differed between the full DXA-driven and scaled inverse dynamics analyses; and (3) full DXA-driven inverse dynamics calculations for shoulder kinetics were more often associated with SMI than BMI. Results suggest that using participant-specific BSIPs and pitching arm, SMIs may improve evidence-based injury prevention guidelines for youth pitchers.

摘要

许多棒球投球研究都采用逆动力学来评估投掷手臂的动力学,因为人们认为高且重复的动力学与投球损伤有关。然而,先前的研究并未使用特定参与者的身体节段惯性参数(BSIPs),人们认为这些参数有助于改进对高加速度运动和超重参与者的分析。本研究的目的是:(1)使用双能X线吸收法(DXA)测量值计算特定参与者的BSIPs;(2)将由DXA计算的BSIPs确定的动力学逆动力学计算结果(完全DXA驱动的逆动力学)与使用标准逆动力学方法和缩放后的BSIPs(缩放逆动力学)的动力学结果进行比较;(3)研究完全DXA驱动的动力学与超重指标:体重指数(BMI)和节段质量指数(SMI)之间的关联。18名参与者(10 - 11岁)投出10个快球,记录下来用于运动分析。DXA扫描用于计算每个投球手臂节段(上臂、前臂、手部)、BMI和SMI的特定参与者的BSIPs(质量、质心、回转半径)。通过t检验和线性回归分析对假设进行验证。主要结果是:(1)每个投球手臂节段的DXA计算的BSIPs与缩放后的BSIPs不同;(2)完全DXA驱动和缩放逆动力学分析之间,肩部(而非肘部)动力学的计算结果存在差异;(3)完全DXA驱动的肩部动力学逆动力学计算结果与SMI的关联比与BMI的关联更常见。结果表明,使用特定参与者的BSIPs和投球手臂的SMIs可能会改进针对青少年投手的循证损伤预防指南。

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