Department of Orthodontics, School of Dentistry, Showa University, 2-1-1 Kitasenzoku, Ota-ku, Tokyo 145-8515, Japan.
Research and Development Department, Seiko Future Creation Inc., 563, Takatsuka Shinden, Chiba 270-2222, Japan.
Sensors (Basel). 2024 Jan 10;24(2):435. doi: 10.3390/s24020435.
Blood oxygen saturation (SpO) is an essential indicator of a patient's general condition. However, conventional measurement methods have some issues such as time delay and interference by ambient light. Improved measurement methods must be developed, and there are no reports on intraoral measurements of SpO using wearable devices. Therefore, we aimed to establish an intraoral SpO measurement method for the first time. Twelve healthy adults participated in this study. The following steps were taken: (1) to identify the optimal measurement location, mid-perfusion index (PI) values were measured at six places on the mucosa of the maxilla, (2) to validate the optimal measurement pressure, PI values were obtained at different pressures, and (3) using the proposed mouthpiece device, SpO values in the oral cavity and on the finger were analyzed during breath-holding. The highest PI values were observed in the palatal gingiva of the maxillary canine teeth, with high PI values at pressures ranging from 0.3 to 0.8 N. In addition, changes in SpO were detected approximately 7 s faster in the oral cavity than those on the finger, which is attributed to their proximity to the heart. This study demonstrates the advantage of the oral cavity for acquiring biological information using a novel device.
血氧饱和度(SpO2)是患者一般情况的重要指标。然而,传统的测量方法存在一些问题,例如时间延迟和环境光干扰。必须开发改进的测量方法,并且尚无关于使用可穿戴设备进行口腔内 SpO2 测量的报告。因此,我们旨在首次建立口腔内 SpO2 测量方法。十二名健康成年人参加了这项研究。采取了以下步骤:(1)确定最佳测量位置,在上颌粘膜的六个部位测量中灌注指数(PI)值,(2)验证最佳测量压力,在不同压力下获得 PI 值,以及(3)使用提出的口内装置,在屏气期间分析口腔内和手指上的 SpO2 值。在尖牙的上颌牙龈处观察到最高的 PI 值,在 0.3 至 0.8 N 的压力范围内具有较高的 PI 值。此外,口腔内的 SpO 变化比手指上的变化快约 7 秒,这归因于它们靠近心脏。这项研究表明,使用新型设备从口腔获取生物信息具有优势。