背景:因骨盆解剖结构较为复杂,与多个重要脏器、血管、神经毗邻,通过传统方法治疗复杂髋关节疾病的操作难度较大。利用3D打印技术显著提升了此类疾病的手术成功率及患者满意度。目的:归纳3D打印技术在髋关节疾病治疗中的应用效果。方法...背景:因骨盆解剖结构较为复杂,与多个重要脏器、血管、神经毗邻,通过传统方法治疗复杂髋关节疾病的操作难度较大。利用3D打印技术显著提升了此类疾病的手术成功率及患者满意度。目的:归纳3D打印技术在髋关节疾病治疗中的应用效果。方法:利用计算机检索CNKI、PubMed数据库2000年1月至2019年3月发表的相关文献,中文检索词为“3D打印技术,发育性髋关节发育不良,骨盆骨折,髋臼骨折,骨盆肿瘤,髋臼肿瘤、髋关节置换”,英文检索词为“3D printing,developmental dysplasia of the hip,DDH,pelvic fracture,acetabular fracture,pelvic tumor,acetabular tumor,replacement or the hip joint”。共检索到103篇文章,根据纳入与排除标准最终纳入41篇文献进行综述。结果与结论:3D打印的优势在于不需要模具,直接通过数字化技术制造复杂的几何模具或模型。将3D打印技术应用在发育性髋关节发育不良、复杂的骨盆及髋臼骨折与髋关节肿瘤的临床治疗中,显著提高了患者满意度,减少了并发症的发生。因此,将3D打印技术用于髋关节疾病的诊治对髋关节疾病的术前指导、术中操作以及术后康复都具有重要临床意义与广阔的应用前景。展开更多
The pathogenesis of orthopedic diseases is intimately linked to blood stasis,frequently arising from damage to primary and secondary blood channels.This disruption can lead to“blood leaving the meridians”or Qi stagn...The pathogenesis of orthopedic diseases is intimately linked to blood stasis,frequently arising from damage to primary and secondary blood channels.This disruption can lead to“blood leaving the meridians”or Qi stagnation,resulting in blood stasis syndrome.Taohong Siwu Decoction(THSWD)is a renowned classical Chinese medicinal formula extensively used to promote blood circulation and mitigate blood stasis.Clinical studies have demonstrated its significant therapeutic effects on various orthopedic conditions,particularly its anti-inflammatory and analgesic properties,as well as its efficacy in preventing deep vein thrombosis post-surgery.Despite these findings,research on THSWD remains fragmented,and its interdisciplinary impact is limited.This review aims to provide a comprehensive evaluation of the efficacy and pharmacological mechanisms of THSWD in treating common orthopedic diseases.Additionally,we employ bibliometric analysis to explore research trends and hotspots related to THSWD.We hope this review will enhance the recognition and application of THSWD in orthopedic treatments and guide future research into its pharmacological mechanisms.展开更多
文摘背景:因骨盆解剖结构较为复杂,与多个重要脏器、血管、神经毗邻,通过传统方法治疗复杂髋关节疾病的操作难度较大。利用3D打印技术显著提升了此类疾病的手术成功率及患者满意度。目的:归纳3D打印技术在髋关节疾病治疗中的应用效果。方法:利用计算机检索CNKI、PubMed数据库2000年1月至2019年3月发表的相关文献,中文检索词为“3D打印技术,发育性髋关节发育不良,骨盆骨折,髋臼骨折,骨盆肿瘤,髋臼肿瘤、髋关节置换”,英文检索词为“3D printing,developmental dysplasia of the hip,DDH,pelvic fracture,acetabular fracture,pelvic tumor,acetabular tumor,replacement or the hip joint”。共检索到103篇文章,根据纳入与排除标准最终纳入41篇文献进行综述。结果与结论:3D打印的优势在于不需要模具,直接通过数字化技术制造复杂的几何模具或模型。将3D打印技术应用在发育性髋关节发育不良、复杂的骨盆及髋臼骨折与髋关节肿瘤的临床治疗中,显著提高了患者满意度,减少了并发症的发生。因此,将3D打印技术用于髋关节疾病的诊治对髋关节疾病的术前指导、术中操作以及术后康复都具有重要临床意义与广阔的应用前景。
基金supported by the Science and Technology Development Fund,Macao SAR (No.0006/2020/AKP)the Xinglin Scholars Postdoctoral Special Fund (No.BSH2023003)+1 种基金Fujian Maternal and Child Health Hospital Science and Technology Innovation Launch Fund (No.Women and Children YCXY 20-10)Fujian Medical University Sailing Fund (No.2020QH1204).
文摘The pathogenesis of orthopedic diseases is intimately linked to blood stasis,frequently arising from damage to primary and secondary blood channels.This disruption can lead to“blood leaving the meridians”or Qi stagnation,resulting in blood stasis syndrome.Taohong Siwu Decoction(THSWD)is a renowned classical Chinese medicinal formula extensively used to promote blood circulation and mitigate blood stasis.Clinical studies have demonstrated its significant therapeutic effects on various orthopedic conditions,particularly its anti-inflammatory and analgesic properties,as well as its efficacy in preventing deep vein thrombosis post-surgery.Despite these findings,research on THSWD remains fragmented,and its interdisciplinary impact is limited.This review aims to provide a comprehensive evaluation of the efficacy and pharmacological mechanisms of THSWD in treating common orthopedic diseases.Additionally,we employ bibliometric analysis to explore research trends and hotspots related to THSWD.We hope this review will enhance the recognition and application of THSWD in orthopedic treatments and guide future research into its pharmacological mechanisms.