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对胸椎间关节的关节支解剖走行的研究。

Investigation of the anatomical course of articular branches to the thoracic zygapophysial joints.

作者信息

Talsma Joel M, Maus Timothy P, Chitneni Ahish, Hao David

机构信息

Biomedical Sciences, University of New England, Biddeford, ME, USA.

Department of Radiology, Mayo Clinic, Rochester, MN, USA.

出版信息

Interv Pain Med. 2024 Mar 11;3(1):100399. doi: 10.1016/j.inpm.2024.100399. eCollection 2024 Mar.

Abstract

BACKGROUND

Recent studies have questioned the validity of targeting the thoracic medial branch via anesthetic blocks or radiofrequency neurotomy for the diagnosis or treatment of pain from the thoracic zygapophysial joints.

PURPOSE

To define the origin and course of the articular branches to the thoracic zygapophysial joints at all levels.

DESIGN

Cadaveric dissection.

SETTING

The Gross Anatomy Laboratory at the University of New England College of Osteopathic Medicine.

SUBJECTS

One cadaveric thoracic spine.

METHODS

Gross and stereoscopic dissection of the bilateral dorsal rami T1-T12 was performed on one embalmed cadaver. The medial and lateral branches were traced from their cutaneous distribution to the origin at the dorsal ramus. The articular branches were identified using stereoscopic dissection by tracing their origin from the dorsal ramus or medial branch to the capsule of the zygapophysial joint. The images were recorded using digital photography.

RESULTS

Twenty-two of the twenty-four articular branches were identified in a single cadaveric specimen. Articular branches at T7 on the right side and T9 on the left side were not identified. 5 of the 22 (18%) articular branches were observed to arise from the proximal segment of the medial branch of the dorsal ramus. Of the remainder, 17 of the 22 (78%) articular branches were observed to arise from the dorsal primary ramus itself. At levels T1-9, the articular branch coursed inferiorly along the lamina to reach the joint capsule. At levels T10-T12, the articular branch traversed the intervertebral foramen to reach the facet joint. The T12 medial branch on the left was seen to travel inferior to innervate the L1/L2 zygapophysial joint.

CONCLUSION

The source of the innervation for the thoracic zygapophysial is variable and can arise from the dorsal ramus itself or from the proximal segment of the medial branch. Unlike the cervical and lumbar medial branches, which innervate two joints each, in this case, the thoracic dorsal rami appear to innervate only the zygapophysial joint at the level of the nerve exit. It should be noted that the findings may be limited in their generalizability due to the reliance on a single cadaver study.

摘要

背景

近期研究对通过麻醉阻滞或射频神经切断术靶向胸段内侧支来诊断或治疗胸椎间关节疼痛的有效性提出了质疑。

目的

明确各级胸椎间关节关节支的起源和走行。

设计

尸体解剖。

单位

新英格兰大学整骨医学院大体解剖实验室。

对象

一具尸体胸椎。

方法

对一具经防腐处理的尸体的双侧胸1至胸12背根进行大体和立体解剖。从其皮支分布向背根处追溯内侧支和外侧支。通过立体解剖,从背根或内侧支追踪至椎间关节囊来识别关节支。使用数码摄影记录图像。

结果

在单个尸体标本中识别出了24个关节支中的22个。右侧胸7和左侧胸9的关节支未被识别。22个关节支中有5个(18%)被观察到起源于背根内侧支的近端段。其余22个关节支中有17个(78%)被观察到起源于背侧初级支本身。在胸1至胸9水平,关节支沿椎板向下走行至关节囊。在胸10至胸12水平,关节支穿过椎间孔到达小关节。左侧胸12内侧支被观察到向下走行以支配腰1/腰2椎间关节。

结论

胸椎间关节的神经支配来源多变,可起源于背侧支本身或内侧支的近端段。与颈段和腰段内侧支分别支配两个关节不同,在此例中,胸段背根似乎仅支配神经穿出水平的椎间关节。应当注意的是,由于依赖单一尸体研究,这些发现的普遍性可能有限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f3d/11372942/a6f252b13de3/gr1a.jpg

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