Schulz Arndt P, Kowald Birgitt, Münch Matthias, Seide Klaus, Weinrich Nils, Barth Tobias, Kienast Benjamin
Center for Clinical Research, BG Klinikum Hamburg, Bergedorfer Str. 10, 21033 Hamburg, Germany.
Section Medicine, Universität zu Lübeck, Ratzeburger Allee 160, 23538 Lübeck, Germany.
Sensors (Basel). 2025 Sep 16;25(18):5779. doi: 10.3390/s25185779.
A total of 66 smart implants were included. As a measure of bony stability, the relative elastic compliance of the osteosynthesis was determined from the gradient between the applied external load and the measured implant load over the entire healing process. The healing process of non-unions of the femur with a smart implant was tracked by telemetric measurements over a timespan of up to 10 years. The measurements of the longest healing process show a very slow but constant decrease in force transmission over the implant, radiological findings over 10 years show corresponding consolidation until bony healing. The use of a telemetrically instrumented bone plate, a so-called smart implant, to monitor the healing process is a successful procedure to support the clinician in his decision to take further surgical measures or to wait until healing occurs.
总共纳入了66个智能植入物。作为骨稳定性的一项指标,在整个愈合过程中,通过施加的外部负荷与测量的植入物负荷之间的梯度来确定骨合成的相对弹性顺应性。使用智能植入物对股骨不愈合的愈合过程进行了长达10年的遥测跟踪。最长愈合过程的测量结果显示,植入物上的力传递非常缓慢但持续下降,10年的放射学检查结果显示相应的骨痂形成直至骨愈合。使用遥测仪器的接骨板,即所谓的智能植入物,来监测愈合过程,是一种成功的方法,可辅助临床医生决定是否采取进一步的手术措施或等待愈合。