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The daily habitual in vivo strain history of a non-weight-bearing bone.

机译:非承重骨骼的日常惯常体内应变史。

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Daily mechanical loading strongly influences the architecture and composition of bone tissue. Throughout the day, the amplitudes, rates, frequencies, and the dispersion over time of these loads vary. Nevertheless, most experimental and descriptive studies on the aforementioned relationship consider only cyclic loading and, in addition, focus on weight-bearing bones. A more complete assessment of the daily loading of bone might lead to a better understanding of the natural everyday stimulus for bone maintenance or adaptive responses. In the present study, we measured the daily habitual strain history of the non-weight-bearing mandible bone in the rabbit. Long-term continuous strain recordings were made using an implantable telemetry device able to read out bone-bonded strain gauges. The lateral surface of the rabbit mandibular corpus was chosen as the bone surface of interest. During the recordings, which lasted up to 33 h, the rabbits (N=7) were able to move unrestrictedly in their cages, performing their habitual behaviours. Analysis of the recordings revealed that the measured bone surface was subjected to 2.9 (+/-1.4)x10(3) strain events per hour of which 1.8 (+/-1.0)x10(3) had amplitudes < or =10 microstrains (muvarepsilon). Larger strain amplitudes occurred less often and principal strains fell within the range of -517 (+/-118) muvarepsilon to 298 (+/-81) muvarepsilon. Strain rates never exceeded 10,000 muvarepsilon/s and only 8.9% (+/-7.2%) of the habitual strain rates were higher than 1000 muvarepsilon/s. Strain frequency spectra displayed clear peaks at 4-5 and 9 Hz. The wirelessly recorded daily strain history of the rabbit mandible featured peak strain amplitudes resembling those of other mammalian mandibles, but much smaller than those found in many long-bone strain measurements.
机译:每日的机械负荷会强烈影响骨骼组织的结构和组成。整天内,这些负载的幅度,速率,频率和分散随时间变化。然而,关于上述关系的大多数实验和描述性研究仅考虑循环载荷,此外,还着重于负重骨骼。对骨骼每日负荷的更完整评估可能会导致对骨骼维持或适应性反应的自然每日刺激有更好的了解。在本研究中,我们测量了兔子中非承重下颌骨的每日习惯性应变史。使用能够读出骨结合应变仪的可植入遥测设备进行长期连续应变记录。选择兔下颌骨的外侧表面作为目标骨表面。在持续长达33小时的录音过程中,兔子(N = 7)可以不受限制地在笼子里移动,表现出习惯性行为。记录分析表明,每小时测量的骨骼表面受到2.9(+/- 1.4)x10(3)个应变事件,其中1.8(+/- 1.0)x10(3)的振幅小于或等于10个微应变(muvarepsilon )。较大的应变幅度发生的频率较低,主应变落在-517(+/- 118)穆伐西隆到298(+/- 81)穆伐西隆之间。应变率从未超过10,000 muvarepsilon / s,只有8.9%(+/- 7.2%)的习惯应变率高于1000 muvarepsilon / s。应变频谱在4-5和9 Hz处显示清晰的峰值。无线记录的兔子下颌骨的每日应变历史记录显示出峰值应变幅度与其他哺乳动物的下颌骨相似,但远小于许多长骨应变测量中发现的峰值。

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