University of California San Diego, Department of NanoEngineering, La Jolla, California, United States.
University of California San Diego, Materials Science and Engineering Program, La Jolla, California, United States.
J Biomed Opt. 2022 May;27(5). doi: 10.1117/1.JBO.27.5.056005.
Photoacoustic imaging has shown advantages over the periodontal probing method in measuring the periodontal probing depth, but the large size of conventional photoacoustic transducers prevents imaging of the more posterior teeth.
Our aim is to develop a photoacoustic imaging system to image the more posterior periodontal pocket.
We report a clinical "hockey-stick"-style transducer integrated with fibers for periodontal photoacoustic imaging. Cuttlefish ink labeled the periodontal pocket as the photoacoustic contrast agent.
We characterized the imaging system and then measured the pocket depth of 35 swine teeth. Three raters evaluated the performance of the hockey-stick transducer. The measurements between the Williams probing (gold standard) and the photoacoustic methods were blinded but highly correlated. We showed a bias of ∼0.3 mm for the imaging-based technique versus Williams probing. The minimum inter-reliability was over 0.60 for three different raters of varying experience, suggesting that this approach to measure the periodontal pocket is reproducible. Finally, we imaged three pre-molars of a human subject. We could access more upper and posterior teeth than conventional linear transducers.
The unique angle shape of the hockey-stick transducer allows it to image more posterior teeth than regular linear transducers. This study demonstrated the ability of a hockey-stick transducer to measure the periodontal pocket via photoacoustic imaging.
相较于牙周探针测量法,光声成象在测量牙周探诊深度方面具有优势,但传统光声换能器体积较大,无法对更靠后的牙齿进行成像。
我们旨在开发一种光声成像系统,以对更靠后的牙周袋进行成像。
我们报告了一种临床用“曲棍球棒”式换能器,该换能器集成了用于牙周光声成像的光纤。乌贼墨作为光声对比剂标记牙周袋。
我们对成像系统进行了特征描述,然后测量了 35 颗猪牙的牙周袋深度。三名评估者对曲棍球棒换能器的性能进行了评估。Williams 探针(金标准)与光声方法之间的测量结果是盲测的,但高度相关。我们发现,与 Williams 探针相比,基于成像的技术存在约 0.3 毫米的偏差。对于不同经验的三名评估者,最低的复测可靠性均高于 0.60,这表明这种测量牙周袋的方法具有可重复性。最后,我们对一名人类受试者的三颗前磨牙进行了成像。与常规线性换能器相比,我们可以对更多的上后牙进行成像。
曲棍球棒换能器的独特角度形状使其能够比常规线性换能器对更靠后的牙齿进行成像。本研究证明了曲棍球棒换能器通过光声成像来测量牙周袋的能力。