首页> 外文OA文献 >Demineralized bone matrix-induced ectopic bone formation in rats: in vivo study with follow-up by magnetic resonance imaging, magnetic resonance angiography, and dual-energy X-ray absorptiometry.
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Demineralized bone matrix-induced ectopic bone formation in rats: in vivo study with follow-up by magnetic resonance imaging, magnetic resonance angiography, and dual-energy X-ray absorptiometry.

机译:脱矿质的骨基质诱导的大鼠异位骨形成:体内研究,并通过磁共振成像,磁共振血管造影和双能X线吸收法进行随访。

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摘要

The aim of this study was to further explore the use of magnetic resonance imaging (MRI), magnetic resonance angiography (MRA), and dual-energy X-ray absorptiometry (DEXA) to assess bone formation and blood circulation in a pedicled bone graft substitute. In 14 Wistar rats, initially 10 weeks old, heterogeneous demineralized femur bone matrix implants were wrapped in pedicled adductor thigh muscle flaps. One rat died after surgery. Subsequently, bone formation and maintenance of blood vessel functionality were evaluated in six rats 6 weeks postimplantation by means of in vivo MRI/MRA and postmortem histomorphometry. The other seven rats were left for 12 weeks, whereafter bone formation was evaluated by in vivo DEXA and postmortem histomorphometry. The results demonstrated that after 6 weeks bone formation was present in four of six animals, quantified as 42 (+/-35)% and 25 (+/-19)% by means of MRI and histomorphometry, respectively. MRA was able to show patency of the pedicles of these four rats only, which suggests that the lack of blood supply in the other two rats is the cause of the failure to form bone. In the 12-week group, histology showed increased bone formation without signs of osteolysis, which was quantified histomorphometrically to be as high as 48 (+/-15)%. DEXA failed to show bone formation. It is concluded that in vivo MRI proved to be a reliable method for monitoring ectopic bone formation in a rat model, whereas in vivo DEXA was unable to detect the implants. Furthermore, in vivo MRA proved to be a useful technique for studying the circulation of muscle flaps in this animal model.
机译:这项研究的目的是进一步探索使用磁共振成像(MRI),磁共振血管造影(MRA)和双能X线骨密度仪(DEXA)来评估带蒂骨移植物替代物中的骨形成和血液循环。在最初10周大的14只Wistar大鼠中,将异质的脱矿质股骨骨基质植入物包裹在带蒂的大腿内收肌大肌皮瓣中。一只老鼠在手术后死亡。随后,通过体内MRI / MRA和验尸组织形态测定法评估了植入后6周的六只大鼠的骨形成和血管功能的维持。其余7只大鼠放置12周,然后通过体内DEXA和验尸组织形态学评估骨形成。结果表明,六周后,六只动物中有四只存在骨形成,通过MRI和组织形态计量学分别量化为42(+/- 35)%和25(+/- 19)%。 MRA仅能显示这四只大鼠的椎弓根通畅,这表明其他两只大鼠的血液供应不足是导致骨形成失败的原因。在为期12周的组中,组织学检查显示骨形成增加而没有溶骨迹象,组织形态计量学上将其量化为高达48(+/- 15)%。 DEXA未能显示出骨形成。结论是,体内MRI被证明是监测大鼠模型中异位骨形成的可靠方法,而体内DEXA无法检测到植入物。此外,体内MRA被证明是用于研究该动物模型中肌肉皮瓣循环的有用技术。

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