雌性大鼠下颌骨骨量和骨强度的变化。

Growth Development and Aging Pub Date : 2003-01-01
María I Olivera, Clarisa Bozzini, Isaac F Meta, Carlos E Bozzini, Rosa M Alippi
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引用次数: 0

摘要

本研究提供了在出生后第21天至180天期间收集的一些下颌生长尺寸,特别是骨量和骨强度的基线数据,旨在为研究人员设计实验研究,特别是下颌追赶生长的研究提供参考,并为临床医生评估已发表的动物研究结果的有效性和潜在的外推到人类临床情况提供帮助。50只断奶雌性Wistar (Hsd:Wi)大鼠随意喂食一种先前显示允许正常,未变形的下颌生长的饮食。在21 ~ 180 d的不同时间随机选取5只。通过解剖点之间的测量,直接在右半下颌骨上估计下颌生长;下颌骨量(钙量)由钙的毫克数估算,由原子吸收分光光度法测定,存在于左半颌骨灰烬中;采用三点弯曲力学试验测定了右半下颌骨的力学性能。雌性大鼠下颌骨的尺寸、骨钙量和骨强度从第21天到第90天呈线性增加。正如预期的那样,当参数表示为相对于平均婴儿条件的相对增长时,通过骨骼重量评估的骨生长比通过下颌面积、长度或高度评估的骨生长多两倍以上。下颌骨后部(第三磨牙后)的生长速度几乎是前部的5倍。90天后,各参数的生长速率明显下降。方差分析显示,在第90天和第120天的数值之间没有发现统计学差异。由此可见,雌性大鼠下颌骨在出生后90 ~ 120 d达到了成年大鼠的大小、骨钙量和骨结构力学性能的峰值。由于下颌骨骨钙量与下颌骨面积和下颌骨体重都有极高的正相关关系,因此可以从7.69 mgCa/cm2和0.19 mgCa/mg骨的关系中计算出下颌骨峰值骨量。
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The development of bone mass and bone strength in the mandible of the female rat.

The present study provides baseline data for a number of mandibular growth dimensions, specially on bone mass and bone strength, that were collected between the 21st and the 180th days of postnatal life, which are intended as a reference for researchers designing experimental studies, specially on mandibular catch-up growth, and as an aid for clinicians who must evaluate results from published animal studies for validity and potential extrapolation to the human clinical situation. Fifty weanling female Wistar (Hsd:Wi) rats were fed ad libitum a diet previously shown to allow normal, undeformed mandibular growth. Five of them were randomly selected at different times between 21 and 180 d of life. Mandibular growth was estimated directly on the right hemimandible by taking measurements between anatomical points; mandibular bone mass (calcium mass) was estimated from the mg of calcium, determined by atomic absorption spectrophotometry, present in the ashes of the left hemimandible; and mechanical properties of the right hemimandible were determined using three-point bending mechanical test. Dimensions, bone calcium mass and bone strength of the female rat mandible increased linearly from day 21 to approximately day 90. Bone growth, as expected, was more than twice when assessed from bone weight than when derived from mandibular area, length or height when the parameters were expressed as the relative increase from the mean infant condition. The growth rate of the posterior part of the mandible (behind the third molar) was almost five times greater than that of the anterior part. The rates of growth of the studied parameters showed a marked decline after day 90. ANOVA indicated that no statistical differences were found between day 90 and day 120 values. It could be concluded that the female rat mandible attains its adult size, peak bone calcium mass and bone structural mechanical properties at some point between 90 and 120 d of postnatal life. Because of the extremely high positive correlation between mandibular bone calcium mass and both mandibular area and mandibular weight, it was possible to calculate the mandibular peak bone mass from the relations 7.69 mgCa/cm2 and 0.19 mgCa/mg bone.

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