Publications by authors named "A D Biggs"

Article Synopsis
  • Radiotherapy (RTx) is a cancer treatment that can make bones weaker and more prone to fractures after treatment.
  • In a study, rat femurs (thigh bones) were irradiated to see how RTx affects their strength and any damage caused by stress.
  • The results showed that RTx significantly weakened the bones and caused more damage over time, even though the overall bone shape and density stayed the same.
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Naval shipboard operations impose numerous environmental and occupational stressors, which can adversely affect mental and physical health outcomes. Moreover, this operational setting also complicates the implementation of countermeasures to protect personnel from these stressors. Thus, any easily accessible or modifiable protective factors should be explored further for their potential to support the health of military personnel.

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Bone fragility is a well-documented long-term side effect of radiotherapy, which currently has no preventative treatments. In this study, we applied a caloric restriction (CR) diet to attenuate both local and systemic bone loss after irradiation (RTx) in an established female Balb/c mouse model (4 consecutive daily doses of 5 Gy to the right hindlimb only). CR mice were tapered down to a 30% reduced calorie diet (RTx/CR) one week before irradiation, while regular diet (RD) mice received food ad libitum (RTx/RD).

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Introduction: Shooting simulations provide an excellent opportunity to train use-of-force decisions in controlled environments. Recently, military and law enforcement organizations have expressed a growing desire to integrate physiological measurement into simulations for training and feedback purposes. Although participants can easily wear physiological monitors in these scenarios, direct implementation into training may not be simple.

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Progressive osteolysis can occur at the cement-bone interface of joint replacements and the associated loss of fixation can lead to clinical loosening. We previously developed a rat hemiarthroplasty model that exhibited progressive loss of fixation with the development of cement-bone gaps under the tibial tray that mimicked patterns found in human arthroplasty retrievals. Here we explored the ability of a bisphosphonate (zoledronic acid, ZA) to attenuate cement-bone osteolysis and maintain implant stability.

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