Yoganandan N, Zhang J, Pintar F A, King Liu Y
Department of Neurosurgery, Medical College of Wisconsin, 9200 West Wisconsin Avenue, Milwaukee WI 53226, USA.
J Biomech. 2006;39(7):1347-54. doi: 10.1016/j.jbiomech.2005.03.016.
Despite recognizing the importance of angular acceleration in brain injury, computations using data from experimental studies with biological models such as human cadavers have met with varying degrees of success. In this study, a lightweight and a low-profile version of the nine-accelerometer system was developed for applications in head injury evaluations and impact biomechanics tests. The triangular pyramidal nine-accelerometer package (PNAP) is precision-machined out of standard aluminum, is lightweight (65 g), and has a low profile (82 mm base width, 35 mm vertex height). The PNAP assures accurate orthogonal characteristics because all nine accelerometers are pre-aligned and attached before mounting on a human cadaver preparation. The feasibility of using the PNAP in human cadaver head studies is demonstrated by subjecting a specimen to an impact velocity of 8.1 m/s and the resultant angular acceleration peaked at 17 krad/s2. The accuracy and the high fidelity of the PNAP device at high and low angular acceleration levels were demonstrated by comparing the PNAP-derived angular acceleration data with separate tests using the internal nine-accelerometer head of the Hybrid III anthropomorphic test device. Mounting of the PNAP on a biological specimen such as a human cadaver head should yield very accurate angular acceleration data.
尽管认识到角加速度在脑损伤中的重要性,但使用来自人体尸体等生物模型的实验研究数据进行的计算取得了不同程度的成功。在本研究中,开发了一种轻量化、低剖面的九加速度计系统,用于头部损伤评估和冲击生物力学测试。三角锥形九加速度计组件(PNAP)由标准铝精密加工而成,重量轻(65克),剖面低(底部宽度82毫米,顶点高度35毫米)。PNAP确保了精确的正交特性,因为所有九个加速度计在安装到人体尸体标本上之前都已预先对齐并固定。通过使一个标本以8.1米/秒的冲击速度撞击,结果角加速度峰值达到17千弧度/秒²,证明了在人体尸体头部研究中使用PNAP的可行性。通过将PNAP得出的角加速度数据与使用混合III型人体模型试验装置的内部九加速度计头部进行的单独测试相比较,证明了PNAP装置在高、低角加速度水平下的准确性和高保真度。将PNAP安装在人体尸体头部等生物标本上应该能产生非常准确的角加速度数据。