上颌窦解剖:通过 3D 成像关注血管和下木隔膜

IF 2.2 4区 医学 Q2 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Tomography Pub Date : 2024-03-24 DOI:10.3390/tomography10040034
S. Bernardi, S. Bianchi, Davide Gerardi, Pierpaolo Petrelli, Fabiola Rinaldi, Maurizio Piattelli, Guido Macchiarelli, Giuseppe Varvara
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引用次数: 0

摘要

上颌窦解剖学研究应考虑两个具有临床重要性的特征。动脉供应路径和所谓的 Underwood 隔膜的存在是计划手术治疗时需要考虑的两个重要因素,可降低手术并发症(如出血过多和施奈德膜穿孔)的风险。本研究旨在对上述解剖结构进行调查,以改进对该区域最终血管和手术并发症的处理。本研究共使用了 200 张锥形束计算机地形图(CBCT),分为两组,每组 100 张,分别评估通过窦外侧壁和安德伍德隔的动脉供血(AAa)路径。三维成像考虑的主要参数是:第一组中的 AAa 是否存在于窦前壁、动脉路径的长度、上颌骨嵴的高度、动脉分支的大小;第二组中的隔的位置、隔的长度及其性别关联。CBCT 分析显示,100% 的受检患者都有动脉通过骨壁供应,平均大小为 1.07 毫米。至于骨间隔,19% 的患者出现了变化,在统计学上没有发现性别差异。这些研究结果加深了人们对上颌窦临床结构的了解,为医疗专业人员提供了手术准备和预防可能出现的并发症的重要细节。
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Anatomy of Maxillary Sinus: Focus on Vascularization and Underwood Septa via 3D Imaging
The study of the maxillary sinus anatomy should consider the presence of two features of clinical importance. The arterial supply course and the presence of the so-called Underwood septa are two important factors to consider when planning surgical treatment to reduce the risk of surgical complications such as excessive bleeding and Schneiderian membrane perforations. This study aimed to investigate the above-mentioned anatomical structures to improve the management of eventual vascular and surgical complications in this area. This study included a total of 200 cone-beam computed topographies (CBCTs) divided into two groups of 100 CBCTs to evaluate the arterial supply (AAa) course through the lateral sinus wall and Underwood’s septa, respectively. The main parameters considered on 3D imaging were the presence of the AAa in the antral wall, the length of the arterial pathway, the height of the maxillary bone crest, the branch sizes of the artery in the first group, and the position of the septa, the length of the septa, and their gender associations in the second group. The CBCT analysis showed the presence of the arterial supply through the bone wall in 100% of the examined patients, with an average size of 1.07 mm. With regard to the septa, 19% of patients presented variations, and no gender difference was found to be statistically significant. The findings add to the current understanding of the clinical structure of the maxillary sinus, equipping medical professionals with vital details for surgical preparation and prevention of possible complications.
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来源期刊
Tomography
Tomography Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
2.70
自引率
10.50%
发文量
222
期刊介绍: TomographyTM publishes basic (technical and pre-clinical) and clinical scientific articles which involve the advancement of imaging technologies. Tomography encompasses studies that use single or multiple imaging modalities including for example CT, US, PET, SPECT, MR and hyperpolarization technologies, as well as optical modalities (i.e. bioluminescence, photoacoustic, endomicroscopy, fiber optic imaging and optical computed tomography) in basic sciences, engineering, preclinical and clinical medicine. Tomography also welcomes studies involving exploration and refinement of contrast mechanisms and image-derived metrics within and across modalities toward the development of novel imaging probes for image-based feedback and intervention. The use of imaging in biology and medicine provides unparalleled opportunities to noninvasively interrogate tissues to obtain real-time dynamic and quantitative information required for diagnosis and response to interventions and to follow evolving pathological conditions. As multi-modal studies and the complexities of imaging technologies themselves are ever increasing to provide advanced information to scientists and clinicians. Tomography provides a unique publication venue allowing investigators the opportunity to more precisely communicate integrated findings related to the diverse and heterogeneous features associated with underlying anatomical, physiological, functional, metabolic and molecular genetic activities of normal and diseased tissue. Thus Tomography publishes peer-reviewed articles which involve the broad use of imaging of any tissue and disease type including both preclinical and clinical investigations. In addition, hardware/software along with chemical and molecular probe advances are welcome as they are deemed to significantly contribute towards the long-term goal of improving the overall impact of imaging on scientific and clinical discovery.
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