Suppr超能文献

基于物联网的实时坐骨压力调整的脊柱骨盆代偿的放射学评估。

The radiographic assessments of spino-pelvic compensation using IoT-based real-time ischial pressure adjustment.

机构信息

Department of Neurosurgery, Neuroscience and Radiosurgery Hybrid Research Center, Inje University Ilsan Paik Hospital, College of Medicine, Goyang, Korea.

出版信息

Medicine (Baltimore). 2022 Feb 4;101(5):e28783. doi: 10.1097/MD.0000000000028783.

Abstract

In malalignment syndrome, the spino-pelvic alignment correction with foot orthotics can be applied only to a standing position in the coronal plane. Considering the fact that the average time Koreans spend sitting in a chair is 7.5 hours per day, studies on spino-pelvic correction in sitting position is needed. The purpose of this study is to investigate the pressure changes and radiographic assessment of spino-pelvic alignment using a chair equipped with a height-adjustable seat-plate. This study was conducted on 30 participants with spinopelvic malalignment. All participants were subjected to measure buttocks interface pressure while seated using a smart chair in three consecutive steps: 1. on initial seated, 2. on balancing seated, and then. 3. on 1 hour balancing seated. Radiographically, the five spino-pelvic parameters such as shoulder height differences (SHD), iliac crest height differences (ICHD), leg length discrepancy (LLD), pelvic oblique angle (POA), and coronal imbalance were analyzed to investigate the effect of pelvic imbalance compensation on spino-pelvic alignment. Statistical analysis was performed using ANOVA and paired test. The pressure discrepancy improvement between buttocks from 36.4 ± 32.3 mm on initial seated to 15.7 ± 20.3 mm on balancing, 12.7 ± 10.9 mm on 1hr balancing seated (Ω,   ). The radiographic results of pelvic imbalance compensation during seated show a statistical improvement of average SHD (from −0.9 to −0.8 mm,  = .005) and average ICHD (from 9.5 to 2.5 mm,  = .037). For a standing posture after use of smart chair, average SHD value (−3.0 to −1.0 mm,  = .005), ICHD (from 1.8 to 0.8 mm,  = .016), and average LLD value (0.8–0.1 mm,  = .033) were statistically significant improved. Spine-pelvic malalignment can be improved by individually customized pelvic compensation using balanced seat plate height adjustments under the real-time pressure sensing and monitoring on the buttocks while seated.

摘要

在对线不良综合征中,使用足部矫形器进行脊柱骨盆对线矫正只能应用于冠状面的站立位。考虑到韩国人平均每天坐在椅子上的时间为 7.5 小时,因此需要研究坐姿下脊柱骨盆矫正的问题。本研究的目的是通过使用可调节座椅板的椅子来研究压力变化和脊柱骨盆对线的放射评估。该研究共纳入 30 例脊柱骨盆对线不良患者。所有参与者均在智能椅子上连续进行三次测量:1. 初始坐姿、2. 平衡坐姿和 3. 1 小时平衡坐姿,测量臀部界面压力。影像学上分析了 5 个脊柱骨盆参数,包括肩高差异(SHD)、髂嵴高度差异(ICHD)、下肢长度差异(LLD)、骨盆倾斜角(POA)和冠状面失衡,以研究骨盆失衡补偿对脊柱骨盆对线的影响。采用方差分析和配对 t 检验进行统计学分析。初始坐姿时臀部压力差为 36.4±32.3mm,平衡坐姿时为 15.7±20.3mm,1 小时平衡坐姿时为 12.7±10.9mm(Ω, )。坐姿时骨盆失衡补偿的影像学结果显示,平均 SHD(从−0.9 至−0.8mm, )和平均 ICHD(从 9.5 至 2.5mm, )均有统计学改善。使用智能椅后,站立位时平均 SHD 值(从−3.0 至−1.0mm, )、ICHD(从 1.8 至 0.8mm, )和平均 LLD 值(0.8-0.1mm, )均有统计学显著改善。通过在臀部实时压力感应和监测下,使用平衡座椅板高度调整进行个体化定制的骨盆补偿,可以改善脊柱骨盆对线不良。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15ce/8812654/c3d31d04ecda/medi-101-e28783-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验