Nguyen Kim-Cuong T, Le Lawrence H, Kaipatur Neelambar R, Major Paul W
School of Dentistry, University of Alberta, Edmonton, Alberta, Canada; Department of Radiology and Diagnostic Imaging, University of Alberta, Edmonton, Alberta, Canada.
Department of Radiology and Diagnostic Imaging, University of Alberta, Edmonton, Alberta, Canada.
Ultrasound Med Biol. 2016 Jan;42(1):333-8. doi: 10.1016/j.ultrasmedbio.2015.09.012. Epub 2015 Nov 3.
The cemento-enamel junction (CEJ), which is the intersection between enamel and cementum, is an important landmark in the diagnosis of periodontal disease. Pulse-echo ultrasound was used to image the CEJs of six porcine lower central incisors with a single 20-MHz transducer. A notch was longitudinally created on the enamel as a stable marker, from which the CEJ was measured. Data were acquired along the tooth's axis at 0.4-mm intervals. Time-distance data were bandpass-filtered to enhance signal-to-noise ratio and record density was increased fourfold to 0.1-mm spacing by a frequency-distance interpolation scheme. Reflections from the CEJ were unambiguously identified along with those from enamel, dentin and cementum. The notch-CEJ distances measured by the ultrasound and micro-computed tomography methods correlated strongly (r = 0.996, p < 0.05) and were in good agreement with the 95% lines of agreement between -0.49 and 0.17 mm, as statistically determined by Bland-Altman analysis. The results indicate the potential of ultrasound to be a reliable and non-ionizing technique to image the CEJ.
牙骨质-釉质界(CEJ)是釉质与牙骨质的交汇处,是牙周疾病诊断中的一个重要标志。使用脉冲回波超声,通过单个20兆赫的换能器对六颗猪下颌中切牙的CEJ进行成像。在釉质上纵向制作一个缺口作为稳定标记,从该标记处测量CEJ。沿牙齿轴线以0.4毫米的间隔采集数据。对时间-距离数据进行带通滤波以提高信噪比,并通过频率-距离插值方案将记录密度提高四倍至0.1毫米间距。明确识别出了来自CEJ以及釉质、牙本质和牙骨质的反射。超声测量的缺口-CEJ距离与微计算机断层扫描方法测量的结果高度相关(r = 0.996,p < 0.05),并且与Bland-Altman分析统计确定的-0.49至0.17毫米的95%一致性界限高度一致。结果表明超声有潜力成为一种可靠的、非电离的CEJ成像技术。