Changes in tibial bone microarchitecture in female recruits in response to 8 weeks of US Army Basic Combat Training

被引:56
|
作者
Hughes, Julie M. [1 ]
Gaffney-Stomberg, Erin [1 ]
Guerriere, Katelyn, I [1 ]
Taylor, Kathryn M. [1 ]
Popp, Kristin L. [2 ]
Xu, Chun [3 ]
Unnikrishnan, Ginu [3 ]
Staab, Jeffery S. [1 ]
Matheny, Ronald W., Jr. [1 ]
McClung, James P. [4 ]
Reifman, Jaques [3 ]
Bouxsein, Mary L. [2 ,5 ,6 ]
机构
[1] US Army Res Inst Environm Med, Mil Performance Div, Natick, MA 01760 USA
[2] Massachusetts Gen Hosp, Endocrine Unit, Boston, MA 02114 USA
[3] US Army Med Res & Mat Command, Dept Def Biotechnol, High Performance Comp Software Applicat Inst, Telemed & Advance Technol Res Ctr, Ft Detrick, MD 21702 USA
[4] US Army Res Inst Environm Med, Mil Nutr Div, Natick, MA 01760 USA
[5] Beth Israel Deaconess Med Ctr, Ctr Adv Orthoped Studies, Boston, MA 02215 USA
[6] Harvard Med Sch, Dept Orthopaed Surg, Boston, MA 02215 USA
关键词
Biochemical markers of bone turnover; Exercise; HR-pQCT; Bone microarchitecture; Basic Combat Training; Military training; STRESS-FRACTURE RISK; DISTAL RADIUS; IN-VIVO; HR-PQCT; POSTMENOPAUSAL WOMEN; ESTIMATED STRENGTH; PHYSICAL-ACTIVITY; SERUM SCLEROSTIN; MINERAL DENSITY; RESISTANCE;
D O I
10.1016/j.bone.2018.04.021
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background: U.S. Army Basic Combat Training (BCT) is a physically-demanding program at the start of military service. Whereas animal studies have shown that increased mechanical loading rapidly alters bone structure, there is limited evidence of changes in bone density and structure in humans exposed to a brief period of unaccustomed physical activity. Purpose: We aimed to characterize changes in tibial bone density and microarchitecture and serum-based biochemical markers of bone metabolism in female recruits as a result of 8 weeks of BCT. Methods: We collected high-resolution peripheral quantitative computed tomographic images of the distal tibial metaphysis and diaphysis (4% and 30% of tibia length from the distal growth plate, respectively) and serum markers of bone metabolism before and after BCT. Linear mixed models were used to estimate the mean difference for each outcome from pre- to post-BCT, while controlling for race/ethnicity, age, and body mass index. Results: 91 female BCT recruits volunteered and completed this observational study (age = 21.5 +/- 3.3 yrs). At the distal tibial metaphysis, cortical thickness, trabecular thickness, trabecular number, bone volume/total volume, and total and trabecular volumetric bone density (vBMD) increased significantly by 1-2% (all p < 0.05) over the BCT period, whereas trabecular separation, cortical tissue mineral density (TMD), and cortical vBMD decreased significantly by 0.3-1.0% (all p < 0.05). At the tibial diaphysis, cortical vBMD and cortical TMD decreased significantly (both -0.7%, p < 0.001). Bone strength, estimated by micro finite element analysis, increased by 2.5% and 0.7% at the distal tibial metaphysis and diaphysis, respectively (both p < 0.05). Among the biochemical markers of bone metabolism, sclerostin decreased (-5.7%), whereas bone alkaline phosphatase, C-telopeptide cross-links of type 1 collagen, tartrate-resistance acid phosphatase, and 25(OH)D increased by 10-28% (all p < 0.05). Conclusion: BCT leads to improvements in trabecular bone microarchitecture and increases in serum bone formation markers indicative of new bone formation, as well as increases in serum bone resorption markers and decreases in cortical vBMD consistent with intracortical remodeling. Together, these results demonstrate specific changes in trabecular and cortical bone density and microarchitecture following 8 weeks of unaccustomed physical activity in women.
引用
收藏
页码:9 / 16
页数:8
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