Department of Diagnostic and Interventional Radiology and Nuclear Medicine, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Institute of Biomechanics TUHH Hamburg University of Technology, Hamburg, Germany.
Clin Biomech (Bristol). 2023 Jul;107:106015. doi: 10.1016/j.clinbiomech.2023.106015. Epub 2023 May 26.
Totally implantable central venous access port devices are crucial for intravenous application of chemotherapeutics and long-term therapy for chronic disease. Common complications include thrombosis and device fracture related to altered material properties through exposure in situ. This study exhibits whether uniaxial tensile properties (DIN 10555-3) of in vivo used catheters prove inferior to unused catheters.
5 unused, originally packed silicone catheters were cut into 6 segments of 50 mm: 3 segments each were cleaned via cleaning solution (n = 15) while 3 segments were left unattended (n = 15). Distal segments (50 mm) of long-term in vivo used silicone catheters were cleaned before testing (n = 33). Overall mechanical behavior was tested in a custom-made self-centering, torsion free carrier. Maximum force stress at failure, strain at failure and Young's modulus were determined and statistically analyzed.
Unused catheters showed no significant difference in testing. in vivo used catheters exhibited 20% lower maximal force than unused catheters (p < 0.001), strain at break (p 〈0,001), and 7% higher elastic modulus (p = 0.004; power: 0.845). Due to a constant cross section area, stress at failure was proportional to maximum force (p < 0.001). Relation between determined parameters and dwell times was non-significant.
In vivo long-term used silicone catheters showed significantly lower ultimate strength than unused ones. It is likely that in situ altering changes the mechanical properties of catheters and may potentially lead to failure.
完全植入式中央静脉通路端口设备对于静脉应用化疗药物和慢性疾病的长期治疗至关重要。常见的并发症包括血栓形成和由于原位暴露导致材料特性改变而引起的设备断裂。本研究展示了体内使用的导管的单轴拉伸性能(DIN 10555-3)是否不如未使用的导管。
将 5 根未使用的、原始包装的硅胶导管切成 50mm 的 6 段:3 段各用清洗液清洗(n=15),3 段不清洗(n=15)。在测试前,对长期体内使用的硅胶导管的远端(50mm)段进行清洗(n=33)。整体机械性能在定制的自定心、无扭转的载体中进行测试。测定断裂时的最大力、断裂时的应变和杨氏模量,并进行统计学分析。
未使用的导管在测试中没有明显差异。体内使用的导管的最大力比未使用的导管低 20%(p<0.001),断裂时的应变(p〈0.001)和 7%更高的弹性模量(p=0.004;功率:0.845)。由于横截面积恒定,断裂时的应力与最大力成正比(p<0.001)。确定的参数与停留时间之间的关系不显著。
体内长期使用的硅胶导管的最终强度明显低于未使用的导管。很可能是原位改变了导管的机械性能,并可能导致故障。