Kakino Satoko, Takagi Yuzo, Takatani Setsuo
Tokyo Medical and Dental University Section of Developmental Oral Health Science, School of Dentistry, Tokyo, Japan.
J Biomed Opt. 2008 Sep-Oct;13(5):054023. doi: 10.1117/1.2976112.
After confirming that the gingival circulation had little effect on transmitted light plethysmography measurement in the upper central incisor in both in vivo experiments and numerical Monte Carlo simulation studies, a three-layer model comprising of a pulp chamber sandwiched between two dentin layers has been introduced to quantify the pulp chamber hematocrit (Hctp) from the measured optical density. Two-flux theory was utilized to derive a mathematical equation for transmitted intensity in terms of tooth dimensions, Hctp, and light-source wavelength. Each layer was assumed homogeneous so as to represent its optical properties by the bulk absorption and scattering constants. The mean error between the Hctp estimate based on the three-layer-model equation and the Hctp actual in the extracted model tooth was -0.00115 with standard deviation (SD) of 0.00733 at 522 nm wavelength, while for 810 nm +0.09157 and 0.02493. The Hctp estimate of the upper central incisor in 10 young volunteers at 522 nm using the three-layer model ranged from 0.002 to 0.061 with the mean of 0.032. The Hctp change reflects blood volume shift in the pulp microcirculation to possibly indicate dental pulp vitality.
在体内实验和数值蒙特卡罗模拟研究均证实牙龈循环对上颌中切牙的透射光容积描记测量影响不大之后,引入了一个三层模型,该模型由夹在两层牙本质之间的牙髓腔组成,用于根据测量的光密度量化牙髓腔血细胞比容(Hctp)。利用双向流理论推导了一个关于透射强度的数学方程,该方程与牙齿尺寸、Hctp和光源波长有关。假定每层都是均匀的,以便通过体吸收和散射常数来表示其光学特性。在522nm波长下,基于三层模型方程的Hctp估计值与提取的模型牙中Hctp实际值之间的平均误差为-0.00115,标准差(SD)为0.00733,而在810nm时分别为+0.09157和0.02493。使用三层模型对10名年轻志愿者上颌中切牙在522nm处的Hctp估计值范围为0.002至0.061,平均值为0.032。Hctp变化反映了牙髓微循环中的血容量变化,可能指示牙髓活力。