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蒙特卡罗模拟在牙科组织三维建模中漫反射光学光谱的应用。

Monte Carlo Simulation of Diffuse Optical Spectroscopy for 3D Modeling of Dental Tissues.

机构信息

Department of Biomedical Engineering, University of Massachusetts, Amherst, MA 01003, USA.

Institute for Applied Life Sciences, University of Massachusetts, Amherst, MA 01003, USA.

出版信息

Sensors (Basel). 2023 May 27;23(11):5118. doi: 10.3390/s23115118.

Abstract

Three-dimensional precise models of teeth are critical for a variety of dental procedures, including orthodontics, prosthodontics, and implantology. While X-ray-based imaging devices are commonly used to obtain anatomical information about teeth, optical devices offer a promising alternative for acquiring 3D data of teeth without exposing patients to harmful radiation. Previous research has not examined the optical interactions with all dental tissue compartments nor provided a thorough analysis of detected signals at various boundary conditions for both transmittance and reflectance modes. To address this gap, a GPU-based Monte Carlo (MC) method has been utilized to assess the feasibility of diffuse optical spectroscopy (DOS) systems operating at 633 nm and 1310 nm wavelengths for simulating light-tissue interactions in a 3D tooth model. The results show that the system's sensitivity to detect pulp signals at both 633 nm and 1310 nm wavelengths is higher in the transmittance compared with that in the reflectance mode. Analyzing the recorded absorbance, reflectance, and transmittance data verified that surface reflection at boundaries can improve the detected signal, especially from the pulp region in both reflectance and transmittance DOS systems. These findings could ultimately lead to more accurate and effective dental diagnosis and treatment.

摘要

三维精确的牙齿模型对于各种牙科手术至关重要,包括正畸、修复学和种植牙学。虽然基于 X 射线的成像设备常用于获取有关牙齿的解剖信息,但光学设备为获取牙齿的 3D 数据提供了一种有前途的替代方法,而不会使患者暴露在有害辐射下。以前的研究尚未检查与所有牙科组织隔室的光学相互作用,也没有对透射和反射模式的各种边界条件下的检测信号进行彻底分析。为了解决这一差距,已经使用基于 GPU 的蒙特卡罗(MC)方法来评估在 633nm 和 1310nm 波长下运行的漫射光学光谱(DOS)系统模拟 3D 牙齿模型中光与组织相互作用的可行性。结果表明,与反射模式相比,系统在透射模式下对 633nm 和 1310nm 波长下牙髓信号的检测灵敏度更高。分析记录的吸收、反射和透射数据验证了边界处的表面反射可以改善检测信号,特别是在两种反射和透射 DOS 系统中的牙髓区域。这些发现最终可能导致更准确和有效的牙科诊断和治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2533/10255649/ea74c203eea7/sensors-23-05118-g001.jpg

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