下颌骨皮质骨的分形分析:根尖周X线片和显微计算机断层扫描与锥束计算机断层扫描两种处理方法获得的分形维数之间的相关性。

IF 1.5 4区 环境科学与生态学 Q3 BIOLOGY Radiation and Environmental Biophysics Pub Date : 2023-11-01 Epub Date: 2023-10-04 DOI:10.1007/s00411-023-01045-0
Adriano de Oliveira Loures, Matheus de Abreu, Karina Lopes Devito, Eric Flavio Grisolia-Seifert, Katharina Jähn-Rickert, Gustavo Davi Rabelo
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引用次数: 0

摘要

本研究的目的是通过两种处理方法:二值化(FD.b)和基于灰度的方法(FD.f),评估从数字根尖周射线照片(DPR)、高分辨率显微断层摄影(µCT)和锥形束计算机断层摄影(CBCT)中获得的下颌骨皮质骨的分形维数(FD)值,最后,以识别这些值与其他微观体系结构参数之间的相关性。为此,对18名健康个体(平均年龄23岁)进行了前瞻性研究 ± 2.4岁)进行第三磨牙拔除。进行术前CBCT扫描,从磨牙后区域取出骨碎片,并对这些骨样本进行DPR和µCT检查。使用CBCT的三个副矢状面、DPR的一个图像和µCT的三张图像计算FD.b和FD.f值。在µCT中分析3D骨骼微结构(体素大小:19µm)。因此,FD.b的平均值为1.55 ± 0.02和1.80 ± CBCT和µCT分别获得0.01。此外,FD.f的平均值为1.22 ± DPR为0.12,0.99 ± CBCT为0.04,1.30 ± µCT获得0.07。FD.b和FD.f值显示出良好的一致性。FD.f与平均灰度值的标准差呈负相关(p = 0.003)和皮质内骨表面(p = 0.02)。总之,有或没有二值化的图像处理显示出不同的FD值,尽管显示出一致性。基于灰度的方法检索了与灰度级和皮质多孔网络相关的FD值,这意味着FD可以成为评估下颌骨皮质骨的有价值的指标。FD与矿化和微结构有关。然而,从低(DPR)和高分辨率(µCT)X射线模式获得的FD值与从体内CBCT获得的FD之间没有相关性。
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Fractal analysis of the mandible cortical bone: correlation among fractal dimension values obtained by two processing methods from periapical radiograph and micro-computed tomography with cone-beam computed tomography.

The objectives of the present study were to assess Fractal Dimension (FD) values in the mandible cortical bone obtained from digital periapical radiographs (DPR), high-resolution microtomography (µCT), and cone-beam computed tomography (CBCT), by two processing methods: binarization (FD.b) and grayscale-based method (FD.f) and, finally, to identify the correlation among these values with other micro-architectural parameters. For this, a prospective study was conducted on 18 healthy individuals (mean age 23 ± 2.4 years old) who underwent third molar extraction. Pre-operative CBCT scans were conducted, bone fragments were removed from the retro-molar region, and DPR and µCT were performed on those bone samples. FD.b and FD.f values were calculated using three parasagittal sections for CBCT, one image for DPR, and three sections for µCT. The 3D bone microarchitecture was analyzed in µCT (voxel size: 19 µm). As a result, FD.b mean values of 1.55 ± 0.02 and 1.80 ± 0.01 were obtained for CBCT and µCT, respectively. Furthermore, FD.f mean values of 1.22 ± 0.12 for DPR, 0.99 ± 0.04 for CBCT, and 1.30 ± 0.07 for µCT were obtained. Both FD.b and FD.f values showed a good agreement. FD.f was negatively correlated with the standard deviation of the mean gray value (p = 0.003) for DPR and intra-cortical bone surface (p = 0.02) for µCT. In conclusion, image processing with or without binarization revealed different values for FD, although showing agreement. The grayscale-based method retrieved FD values correlated with the gray levels and the cortical porous network, which means that FD can be a valuable index for mandibular cortical bone evaluation. FD is associated with mineralization and microarchitecture. Nevertheless, there was no correlation between FD values obtained from low- (DPR) and high-resolution (µCT) X-ray modalities with FD obtained from the in vivo CBCT.

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来源期刊
CiteScore
4.00
自引率
5.90%
发文量
53
审稿时长
>36 weeks
期刊介绍: This journal is devoted to fundamental and applied issues in radiation research and biophysics. The topics may include: Biophysics of ionizing radiation: radiation physics and chemistry, radiation dosimetry, radiobiology, radioecology, biophysical foundations of medical applications of radiation, and radiation protection. Biological effects of radiation: experimental or theoretical work on molecular or cellular effects; relevance of biological effects for risk assessment; biological effects of medical applications of radiation; relevance of radiation for biosphere and in space; modelling of ecosystems; modelling of transport processes of substances in biotic systems. Risk assessment: epidemiological studies of cancer and non-cancer effects; quantification of risk including exposures to radiation and confounding factors Contributions to these topics may include theoretical-mathematical and experimental material, as well as description of new techniques relevant for the study of these issues. They can range from complex radiobiological phenomena to issues in health physics and environmental protection.
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