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关注邻近解剖学特征的肱骨干微创钢板接骨术。

Minimally invasive plate osteosynthesis of the humeral shaft with regard to adjacent anatomical characteristics.

机构信息

Department of Trauma Surgery, State Hospital Feldbach-Fürstenfeld, Ottokar-Kernstock-Straße 18, 8330, Feldbach, Austria.

Division of Macroscopic and Clinical Anatomy, Gottfried Schatz Research Centre, Medical University of Graz, Harrachgasse 21, 8010, Graz, Austria.

出版信息

Sci Rep. 2022 Jan 7;12(1):279. doi: 10.1038/s41598-021-04041-w.

Abstract

The study goal was to evaluate the distances from the radial (RN), the musculocutaneous (MN) and axillary nerves (AN) and the medial neurovascular bundle of the upper arm to a minimally invasive applied plate and to define its relation to the RN during different degrees of malrotation during MIPO. The sample involved ten upper extremities. Application of a PHILOS plate was performed through a Delta-split. Intervals between the AN, MN, RN and the medial vascular bundle were defined at various positions. The humeral shaft was artificially fractured at a height of about the mean of the plate. The distal fragment was brought into 15° and 30° internal (IR) as well as external rotation (ER) and here, the plate's relation to the RN was evaluated. The medial neurovascular bundle intersected the plate at its distal part in two specimens. Regarding the distances from the RN to the plate during different rotation positions the distances became significantly longer during ER, respectively shorter during IR. The medial neurovascular bundle and the RN were identified as the main structures at risk. Care must be taken during distal screw placement and malrotation exceeding 15° must be avoided during MIPO.

摘要

研究目的是评估在上臂经微创间接钢板固定术(MIPO)中,不同程度旋转移位时,桡神经(RN)、肌皮神经(MN)和腋神经(AN)以及上臂内侧血管神经束到微创应用钢板的距离,并确定其与 RN 的关系。样本涉及 10 个上肢。通过 Delta 劈开应用 PHILOS 钢板。在不同位置定义 AN、MN、RN 和内侧血管束之间的间隔。在钢板高度约为平均值的高度人工骨折肱骨干。将远端片段带入 15°和 30°内旋(IR)和外旋(ER),在此评估钢板与 RN 的关系。在两个标本中,内侧血管神经束在钢板的远端相交。关于在不同旋转位置时 RN 与钢板之间的距离,在 ER 时距离明显变长,而在 IR 时距离明显变短。内侧血管神经束和 RN 被确定为主要的危险结构。在放置远端螺钉时必须小心,在 MIPO 中必须避免超过 15°的旋转移位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e341/8742110/c02388dd6eb2/41598_2021_4041_Fig1_HTML.jpg

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