Li Yu, Wu Jianfeng, Lu Chunfu, Tang Zhichuan, Li Chengmin
Industrial Design and Research Institute, Zhejiang University of Technology, Hangzhou 310023, China.
College of Design and Architecture, Zhejiang University of Technology, Hangzhou 310023, China.
Healthcare (Basel). 2021 May 12;9(5):571. doi: 10.3390/healthcare9050571.
(1) Objective: Sleep problems have become one of the current serious public health issues. The purpose of this research was to construct an ideal pressure distribution model for head and neck support through research on the partitioned support surface of a pillow in order to guide the development of ergonomic pillows. (2) Methods: Seven typical memory foam pillows were selected as samples, and six subjects were recruited to carry out a body pressure distribution experiment. The average value of the first 10% of the samples in the comfort evaluation was calculated to obtain the relative ideal body pressure distribution matrix. Fuzzy clustering was performed on the ideal matrix to obtain the support surface partition. The ideal body pressure index of each partition was calculated, and a hierarchical analysis of each partition was then performed to determine the pressure sensitivity weight of each partition. Using these approaches, the key ergonomic node coordinates of the partitions of four different groups of people were extracted. The ergonomic node coordinates and the physical characteristics of the material were used to design a pillow prototype. Five subjects were recruited for each of the four groups to repeat the body pressure distribution experiment to evaluate the pillow prototype. (3) Results: An ideal support model with seven partitions, including three partitions in the supine position and four partitions in the lateral position, was constructed. The ideal body pressure distribution matrix and ideal body pressure indicators and pressure sensitivity weights for each partition were provided. The pillow that was designed and manufactured based on this model reproduced the ideal pressure distribution matrix evaluated by various groups of people. (4) Conclusion: The seven-partition ideal support model can effectively describe the head and neck support requirements of supine and lateral positions, which can provide strong support for the development of related products.
(1) 目的:睡眠问题已成为当前严重的公共卫生问题之一。本研究旨在通过对枕头分区支撑面的研究构建理想的头颈部支撑压力分布模型,以指导符合人体工程学的枕头的开发。(2) 方法:选取七个典型的记忆棉枕头作为样本,招募六名受试者进行人体压力分布实验。计算舒适度评价中前10%样本的平均值,以获得相对理想的人体压力分布矩阵。对理想矩阵进行模糊聚类以获得支撑面分区。计算每个分区的理想人体压力指数,然后对每个分区进行层次分析以确定每个分区的压力敏感权重。利用这些方法,提取四组不同人群分区的关键人体工程学节点坐标。利用人体工程学节点坐标和材料的物理特性设计枕头原型。为四组中的每组招募五名受试者重复人体压力分布实验以评估枕头原型。(3) 结果:构建了一个理想的七分区支撑模型,包括仰卧位的三个分区和侧卧位的四个分区。提供了理想的人体压力分布矩阵以及每个分区的理想人体压力指标和压力敏感权重。基于该模型设计制造的枕头重现了各人群组评估的理想压力分布矩阵。(4) 结论:七分区理想支撑模型能够有效描述仰卧位和侧卧位的头颈部支撑需求,可为相关产品的开发提供有力支撑。