[Improved unilateral puncture PVP based on 3D printing technology for the treatment of osteoporotic vertebral compression fracture]

Zhongguo Gu Shang. 2024 Jan 25;37(1):7-14. doi: 10.12200/j.issn.1003-0034.20221151.
[Article in Chinese]

Abstract

Objective: To investigate the clinical effect of unilateral percutaneous vertebroplasty (PVP) combined with 3D printing technology for the treatment of thoracolumbar osteoporotic compression fracture.

Methods: A total of 77 patients with thoracolumbar osteoporotic compression fractures from October 2020 to April 2022 were included in the study, all of which were vertebral body compression fractures caused by trauma. According to different treatment methods, they were divided into experimental group and control group. Thirty-two patients used 3D printing technology to improve unilateral transpedicle puncture vertebroplasty in the experimental group, there were 5 males and 27 females, aged from 63 to 91 years old with an average of (77.59±8.75) years old. Forty-five patients were treated with traditional bilateral pedicle puncture vertebroplasty, including 7 males and 38 females, aged from 60 to 88 years old with an average of(74.89±7.37) years old. Operation time, intraoperative C-arm X-ray times, anesthetic dosage, bone cement injection amount, bone cement diffusion good and good rate, complications, vertebral height, kyphotic angle (Cobb angle), visual analogue scale(VAS), Oswestry disability index (ODI) and other indicators were recorded before and after surgery, and statistically analyzed.

Results: All patients were followed up for 6 to 23 months, with preoperative imaging studies, confirmed for thoracolumbar osteoporosis compression fractures, two groups of patients with postoperative complications, no special two groups of patients' age, gender, body mass index (BMI), time were injured, the injured vertebral distribution had no statistical difference(P>0.05), comparable data. Two groups of patients with bone cement injection, bone cement dispersion rate, preoperative and postoperative vertebral body height, protruding after spine angle(Cobb angle), VAS, ODI had no statistical difference(P>0.05). The operative time, intraoperative fluoroscopy times and anesthetic dosage were statistically different between the two groups(P<0.05). Compared with the traditional bilateral puncture group, the modified unilateral puncture group combined with 3D printing technology had shorter operation time, fewer intraoperative fluoroscopy times and less anesthetic dosage. The height of anterior vertebral edge, kyphosis angle (Cobb angle), VAS score and ODI of the affected vertebrae were statistically different between two groups at each time point after surgery(P<0.05).

Conclusion: In the treatment of thoracolumbar osteoporotic compression fractures, 3D printing technology is used to improve unilateral puncture PVP, which is convenient and simple, less trauma, short operation time, fewer fluoroscopy times, satisfactory distribution of bone cement, vertebral height recovery and kyphotic Angle correction, and good functional improvement.

Keywords: 3D printing technology; Osteoporotic fracture; Vertebroplasty.

Publication types

  • English Abstract

MeSH terms

  • Aged
  • Aged, 80 and over
  • Anesthetics*
  • Bone Cements
  • Female
  • Fractures, Compression* / surgery
  • Humans
  • Kyphoplasty* / methods
  • Kyphosis* / surgery
  • Male
  • Middle Aged
  • Osteoporotic Fractures* / surgery
  • Printing, Three-Dimensional
  • Punctures
  • Retrospective Studies
  • Spinal Fractures* / surgery
  • Technology
  • Treatment Outcome
  • Vertebroplasty* / methods

Substances

  • Bone Cements
  • Anesthetics