Dept. of Emergency Medicine, College of Medicine, Hanyang University, Seoul, Republic of Korea.
Resuscitation. 2012 Apr;83(4):500-4. doi: 10.1016/j.resuscitation.2011.09.028. Epub 2011 Oct 14.
Chest compression (CC) feedback devices are used to perform CC measurements effectively and accurately on patients in hospital beds. However, these devices do not take account of the compression of the mattress, which results in overestimation of CC depth. In this study, we propose a new method using two accelerometers to overcome this limitation and thus measure compression depth more accurately when performing cardiopulmonary resuscitation (CPR) on patients.
One accelerometer was placed on the manikin's sternum (a1), and the other between the manikin's back and the mattress (a2). The compression depth was calculated by integrating the acceleration twice using a digital signal processing technique. We compared CC depth from dual accelerometers and single accelerometer (a1) on the foam and inflated air mattress with eight CPR providers.
When CC was done on a manikin lying on the floor, there was no significant difference between measurement techniques (p>0.05). When CC was done on a manikin lying on the foam and inflated air mattress supporting system, our method significantly improved the estimation of CC depth, irrespective of the presence or absence of a backboard (p<0.001).
Measuring CC depth using two accelerometers is more effective than using one in increasing the accuracy of CC depth estimation when CPR is performed on the foam and inflated air mattress, regardless of the presence or absence of a backboard.
胸外按压(CC)反馈设备用于在病床患者身上有效且准确地进行 CC 测量。然而,这些设备并未考虑床垫的压缩,从而导致 CC 深度的高估。在本研究中,我们提出了一种新的方法,使用两个加速度计来克服这一限制,从而在对患者进行心肺复苏(CPR)时更准确地测量压缩深度。
一个加速度计放置在模拟人的胸骨上(a1),另一个放在模拟人的背部和床垫之间(a2)。通过数字信号处理技术,我们对加速度进行两次积分来计算压缩深度。我们比较了在泡沫和充气床垫上,八个 CPR 提供者使用双加速度计和单加速度计(a1)测量的 CC 深度。
当 CC 在躺在地板上的模拟人身上进行时,两种测量技术之间没有显著差异(p>0.05)。当 CC 在泡沫和充气床垫支撑系统上的模拟人身上进行时,无论是否有背板,我们的方法都显著提高了 CC 深度的估计准确性(p<0.001)。
使用两个加速度计测量 CC 深度比使用一个加速度计更有效,在对泡沫和充气床垫上进行 CPR 时,无论是否有背板,都能提高 CC 深度估计的准确性。