Department of Orthopedic Surgery, Chang Gung Memorial Hospital at Linkou, Taoyuan 33305, Taiwan.
Bone and Joint Research Center, Chang Gung Memorial Hospital, Taoyuan 33305, Taiwan.
Sensors (Basel). 2021 Aug 24;21(17):5681. doi: 10.3390/s21175681.
In the real condition, the small sensor found it difficult to detect the position of the pressure sore because of casting displacement clinically. The large sensor will detect the incorrect pressure value due to wrinkles without close to arm. Hence, we developed a simulated arm with physiological sensors combined with an APP and a cloud storage system to detect skin pressure in real time when applying a short arm cast or splint. The participants can apply a short arm cast or splint on the simulative arm and the pressure in the cast or splint could be immediately displaced on the mobile application. The difference of pressure values from six pressure detection points of the simulated arm between the intern and the attending physician with 20-year working experience were 22.8%, -7.3%, 25.0%, 8.6%, 38.2%, 49.6%, respectively. It showed that the difference of pressure values in two farthest points, such as radius stab and ulnar styloid, was maximal. The pressures on the skin surface of the short arm cast were within acceptable range. Doctors would obtain reliable reference data and instantly understand the tightness of the swathed cast which would enable them to adjust it at any time to avoid complications.
在实际情况中,小传感器由于临床中的铸型移位,难以检测压疮位置。大传感器由于没有贴近手臂而产生褶皱,将检测到错误的压力值。因此,我们开发了一种带有生理传感器的模拟手臂,并结合应用程序和云存储系统,以在应用短臂石膏或夹板时实时检测皮肤压力。参与者可以在模拟手臂上应用短臂石膏或夹板,而石膏或夹板内的压力可以立即在移动应用程序上移位。20 年工作经验的住院医师和主治医生在模拟手臂的 6 个压力检测点的压力值差异分别为 22.8%、-7.3%、25.0%、8.6%、38.2%、49.6%。这表明,两个最远点(如桡骨突和尺骨茎突)之间的压力值差异最大。短臂石膏的皮肤表面压力在可接受范围内。医生将获得可靠的参考数据,并即时了解包裹石膏的松紧度,以便随时进行调整,避免并发症。