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首页> 外文期刊>Translational Research in Anatomy >Radio-anatomic variability in sphenoid sinus pneumatization with its relationship to adjacent anatomical structures and their impact upon reduction of complications following endonasal transsphenoidal surgeries
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Radio-anatomic variability in sphenoid sinus pneumatization with its relationship to adjacent anatomical structures and their impact upon reduction of complications following endonasal transsphenoidal surgeries

机译:蝶窦中的无线电解剖学变异性与邻近解剖结构的关系及其影响,及其在减少后转胸腔手术后减少并发症

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Sphenoid sinus is deeply located in the neurocranium of skull and is the most inaccessible paranasal air sinus. A disease of the sphenoid sinus is difficult to diagnose so that it requires a high index of suspicion and multi-detector radiological imaging techniques and surgical biopsy. Moreover, compared with other paranasal air sinuses, the sphenoid sinus is considered the most variable sinus in terms of its patterns of pneumatization, number and inter-sphenoidal sinus septal deviation and its relationship with the surrounding anatomical structures. Thus, the study of sphenoid sinus pneumatization has increased added importance due to newer developments in trans -sphenoidal sinus surgeries and its utility in assessing the complications involving the cranial cavity. Though extensive pneumatization of sphenoid sinus facilitates free routes of endoscopic trans -sphenoidal surgeries, it poses an increased risk of nerve lesions, intracranial hemorrhage, CSF leakage, sinusitis and destructive bone erosions. In this review, we tried to present the variability of patterns of sphenoid sinus pneumatization with related neurovascular structures, a discrepancy of intra-sphenoid sinus septa and the presence of unusual central Onodi cells among racial variants across different geographical or ethno-geographical diversity. A literature search of PubMed, Google Scholar, and Embase databases was performed. Much progress has been made on the radio-anatomical assessments of the sphenoid sinus, but none of these studies reported the sphenoid sinus pneumatization and its relationship with cavernous sinus, abducens nerve and ophthalmic artery. So, further study is needed to show frequent association of these structures with sphenoid sinus pneumatization.
机译:Sphenoid Snus深深地位于头骨的神经聚焦中,是最不可接受的矛盾空气窦。椎弓菇的疾病难以诊断,因此它需要高索引和多探测器放射成像技术和手术活组织检查。此外,与其他胰岛空气鼻窦相比,蝶窦在其气喘勃纳化,数量和蝶窦间窦间隔偏差的模式和与周围解剖结构的关系方面被认为是最可变的窦。因此,由于跨晶体鼻窦手术的新发育及其在评估涉及颅腔并发症的情况下,对蝶窦血红肌的研究增加了增加了重要性。虽然Sphenoid Snus的广泛气喘勃勃促进了内窥镜型晶体手术的自由途径,但它造成了神经病变,颅内出血,CSF泄漏,鼻窦炎和破坏性骨腐蚀的风险增加。在本综述中,我们试图呈现具有相关神经血管结构的蝶窦血红蛋白模式的变异性,蝶窦内窦静脉的差异以及不同地理或民族地理分集中的种族变体中异常中央诺狄迪细胞的存在。执行了PubMed,Google Scholar和Embase数据库的文献搜索。对蝶窦的无线电解剖学评估进行了大量进展,但这些研究都没有报告蝶窦血液化及其与海绵窦,Abducens神经和眼科动脉的关系。因此,需要进一步研究来显示这些结构与蝶窦气血红素频繁关联。

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