Abdollahi Sara, Markvicka Eric J, Majidi Carmel, Feinberg Adam W
Department of Biomedical Engineering, Carnegie Mellon University, 5000 Forbes Avenue, Pittsburgh, PA, 15213, USA.
Robotics Institute, Carnegie Mellon University, 5000 Forbes Avenue, Pittsburgh, PA, 15213, USA.
Adv Healthc Mater. 2020 Aug;9(15):e1901735. doi: 10.1002/adhm.201901735. Epub 2020 Jun 16.
Commercial pulse oximeters are used clinically to measure heart rate and blood oxygen saturation and traditionally made from rigid materials. However, these devices are unsuitable for continuous monitoring due to poor fit and mechanical mismatch. Soft materials that match the elastic properties of biological tissue provide improved comfort and signal-to-noise but typically require molding to manufacture, limiting the speed and ease of customizing for patient-specific anatomy. Here, freeform reversible embedding (FRE) 3D printing is used to create polydimethylsiloxane (PDMS) elastomer cuffs for use on the hand and foot. FRE enables printing liquid PDMS prepolymer in 3D geometries within a sacrificial hydrogel bath that provides support during cure. This serves as proof-of-concept for fabricating patient-specific pulse oximeters with pressure sensing, termed P -wearable. A sizing analysis establishes dimensional accuracy of FRE-printed PDMS compared to anatomical computer-aided design models. The P -wearable successfully outputs photoplethysmography (PPG) and pressure amplitude signals wirelessly to a tablet in real time and the PPG is used to calculate heart rate, blood oxygen content, and activity state. The results establish that FRE printing of PDMS can be used to fabricate patient-specific wearable devices and measure heart rate and blood oxygenation on par with commercial devices.
商用脉搏血氧仪临床上用于测量心率和血氧饱和度,传统上由刚性材料制成。然而,由于贴合性差和机械不匹配,这些设备不适合连续监测。与生物组织弹性特性相匹配的软材料能提供更好的舒适度和信噪比,但通常需要模制来制造,这限制了根据患者特定解剖结构进行定制的速度和便捷性。在此,采用自由形式可逆嵌入(FRE)3D打印技术来制作用于手部和足部的聚二甲基硅氧烷(PDMS)弹性体袖带。FRE能够在牺牲性水凝胶浴中以3D几何形状打印液体PDMS预聚物,该水凝胶浴在固化过程中提供支撑。这为制造具有压力传感功能的患者专用脉搏血氧仪(称为P -可穿戴设备)提供了概念验证。尺寸分析确定了与解剖学计算机辅助设计模型相比,FRE打印的PDMS的尺寸精度。P -可穿戴设备成功地将光电容积脉搏波描记图(PPG)和压力幅度信号实时无线输出到平板电脑,并且PPG用于计算心率、血氧含量和活动状态。结果表明,PDMS的FRE打印可用于制造患者专用可穿戴设备,并与商用设备一样测量心率和血氧饱和度。