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站立位马匹髋结节骨活检评估

Assessment of tuber coxae bone biopsy in the standing horse.

作者信息

Mitchell Colin F, Richbourg Heather A, Goupil Brad A, Gillett Ashley N, McNulty Margaret A

机构信息

Department of Veterinary Clinical Sciences, Louisiana State University School of Veterinary Medicine, Baton Rouge, Louisiana.

Department of Comparative Biomedical Sciences, Louisiana State University School of Veterinary Medicine, Baton Rouge, Louisiana.

出版信息

Vet Surg. 2017 Apr;46(3):396-402. doi: 10.1111/vsu.12603. Epub 2017 Jan 23.

Abstract

OBJECTIVE

To describe a biopsy technique in standing horses with minimal morbidity that consistently provides a substantial bone biopsy with intact, undamaged architecture.

STUDY DESIGN

Experimental, prospective study.

ANIMALS

Ten Thoroughbred horses.

METHODS

Biopsies were obtained from the tuber coxae of 10 sedated, standing horses using an oscillating saw. Bilateral biopsies, separated by 60 days, were evaluated with micro-computed tomography (microCT). The first biopsy was prepared for decalcified histology; the second for undecalcified histology. Both biopsies were evaluated qualitatively for histologic quality.

RESULTS

The biopsy technique did not result in any significant complications, was well tolerated and all biopsies were of good histologic quality.

CONCLUSION

Cortical and trabecular bone biopsies can be successfully collected from the tuber coxa using a simple technique that creates minimal morbidity and allows sequential samples to be collected. The biopsies were larger than those described previously, provided adequate bone for multiple histologic sections, and had intact, undamaged architecture on examination with microCT and light microscopy.

摘要

目的

描述一种用于站立马匹的活检技术,该技术发病率极低,能持续提供具有完整、未受损结构的大量骨活检样本。

研究设计

实验性前瞻性研究。

动物

十匹纯种马。

方法

使用摆动锯从10匹镇静站立的马匹的髋结节获取活检样本。间隔60天进行双侧活检,通过微型计算机断层扫描(microCT)进行评估。第一次活检样本用于脱钙组织学检查;第二次用于不脱钙组织学检查。对两次活检样本的组织学质量进行定性评估。

结果

活检技术未导致任何严重并发症,耐受性良好,所有活检样本的组织学质量均良好。

结论

使用一种简单技术可成功从髋结节采集皮质骨和小梁骨活检样本,该技术发病率极低,并允许采集连续样本。这些活检样本比之前描述的样本更大,能为多个组织学切片提供足够的骨组织,并且在microCT和光学显微镜检查中具有完整、未受损的结构。

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