不同面部分化模式下下巴形态和下颌门齿长度的变化:来自 CBCT 记录的新见解

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-09-11 DOI:10.1111/ocr.12856
Joseph G. Ghafari, Eliane G. Ziade, Ammar Kassab, Maria Saadeh, Anthony T. Macari
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Linear and angular measurements were made on the lateral CBCT images: mandibular lateral incisor crown (I‐C) total (I‐A) lengths, the distances between point D (centre of symphysis) and both incisor apex (D‐A) and menton (D‐Me) and between cemento‐enamel junction and menton (CEJ‐Me); chin width at the level of the central incisor apex (CWA) and point D (CWD); and the angles of the anterior and posterior symphyseal slopes. The volume of the symphysis was measured using a specialized 3D imaging software. Group differences and associations between parameters were gauged through the three‐way ANOVA analysis.ResultsI‐C, I‐A, D‐A, D‐Me and CEJ‐Me were greater in the hyperdivergent group (<jats:italic>p</jats:italic> &lt; .001). CWA and CWD were wider in the hypodivergent group (<jats:italic>p</jats:italic> = .003). Volume of the chin and inter‐slope angles were similar in all groups (<jats:italic>p</jats:italic> &gt; .05). 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引用次数: 0

摘要

材料和方法样本包括 284 张生长期和非生长期患者的锥形束计算机断层扫描 (CBCT) 图像,这些患者根据下颌平面倾斜度与颅底 (SN) 角度被分为 4 组。在 CBCT 侧边图像上进行了线性和角度测量:下颌侧切牙牙冠(I-C)总长度(I-A)、D 点(牙合中心)与切牙顶点(D-A)和牙弓(D-Me)之间的距离以及牙本质-釉质交界处与牙弓(CEJ-Me)之间的距离;中切牙顶点(CWA)和 D 点(CWD)水平的颏宽;以及前后牙合斜坡的角度。使用专门的三维成像软件测量了干骺端的体积。结果I-C、I-A、D-A、D-Me和CEJ-Me在超发散组更大(p <.001)。低发散组的 CWA 和 CWD 更宽(p = .003)。所有组的颏部体积和斜坡间角相似(p > .05)。结论在不同的发散模式之间观察到下颌骨干骺端的形状差异。下颌切牙在高分异时较长,在低分异时较短。然而,各分化组的颏部体积相似。这些发现强调了遗传和环境因素对面部生长的影响。
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Variation of chin morphology and mandibular incisor length in different facial divergence patterns: New insights from CBCT records
AimEvaluate constitutional differences in chin morphology and volume, and mandibular tooth size, between different facial divergence patterns.Materials and MethodsThe sample consisted of 284 pretreatment cone beam computed tomography (CBCT) images of growing and non‐growing patients who were stratified into 4 groups based on mandibular plane inclination to cranial base (SN) angle. Linear and angular measurements were made on the lateral CBCT images: mandibular lateral incisor crown (I‐C) total (I‐A) lengths, the distances between point D (centre of symphysis) and both incisor apex (D‐A) and menton (D‐Me) and between cemento‐enamel junction and menton (CEJ‐Me); chin width at the level of the central incisor apex (CWA) and point D (CWD); and the angles of the anterior and posterior symphyseal slopes. The volume of the symphysis was measured using a specialized 3D imaging software. Group differences and associations between parameters were gauged through the three‐way ANOVA analysis.ResultsI‐C, I‐A, D‐A, D‐Me and CEJ‐Me were greater in the hyperdivergent group (p < .001). CWA and CWD were wider in the hypodivergent group (p = .003). Volume of the chin and inter‐slope angles were similar in all groups (p > .05). The anterior slope angle decreased with hyperdivegence (p < .005) in opposite pattern to the posterior slope angle (p < .005).ConclusionsShape differences in mandibular symphysis were observed between opposite divergence patterns. Mandibular incisors were longer with hyperdivergence and shorter with hypodivergence. However, chin volumes were similar across divergence groups. These findings underline the role of genetic and environmental factors that impact facial growth.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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