Objective: To retrospectively analyze clinical effect of 3D mirror printing combining with minimally invasive percutaneous plate osteosynthesis(MIPPO) technology in the treatment of adult clavicle fracture.
Methods: The clinical data of 32 adult patients with collarbone AllmanⅠdisplacement of fracture who had undergone the combination of 3D mirror printing with MIPPO technology treatment were collected from October 2019 to October 2020. There were 19 males and 13 females, aged from 19 to 55 years old with an average of(34.12±16.42) years old. According to Allman classification, there were 14 cases of AllmanⅠb and 18 cases of AllmanⅠc. Fracture occurred on the left in 17 cases and on the right in 15 cases. Postoperative complications, operation time, incision length, intraoperative blood loss, the number of fluoroscopies, fracture healing time of all patients were retrospectively analyzed, and the curative effect was evaluated by Constant-Murley shoulder joint score before operation, 1 and 6 months after operation.
Results: All the 32 patients were followed up for 6 to 8 months, with an average of (6.67±2.13) months. All the patients did not have postoperative complications such as incision infection and skin numbness in the operating area. The operation time was (35.37±4.28) min. The incision length was (3.78±0.45) cm. Intraoperative blood loss was(37.23±4.76) ml. The number of fluoroscopies was(3.12±0.47) times. Fracture healing time was (8.18±2.58) weeks. Constant-Murley shoulder joint score of the affected side at 1 and 6 months after operation was 81.08±3.92 and 98.03±1.05 respectively, which had a significant difference compared with 54.62±5.25 before operation(<0.05). According to Constant-Murley shoulder function score at 6 months after operation, 30 cases were excellent and 2 cases were good.
Conclusion: 3D mirror printing can effectively assist MIPPO technique in the treatment of adult clavicle AllmanⅠdisplaced fracture. It not only has the advantages of less trauma and fewer complications of the MIPPO technique, but also can further shorten the operation time and improve the operation maneuverability. It is a better method in the treatment of adult clavicle AllmanⅠdisplaced fracture.
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http://dx.doi.org/10.12200/j.issn.1003-0034.2022.08.014 | DOI Listing |
Acta Biomater
December 2024
Department of Orthopedics, Shenzhen Hospital, Southern Medical University, Shenzhen 518000, PR China; The Third School of Clinical Medicine, Southern Medical University, Guangzhou 510000, PR China. Electronic address:
The periosteum, a highly specialized thin tissue, is instrumental in contributing to as much as 70% of early bone formation. Recognizing the periosteum's vital physiological roles, the fabrication of a biomimetic periosteum has risen as an auspicious strategy for addressing extensive bone defects. In the study, we obtained such biomimetic periosteum by utilizing periosteum-derived stem cells (PDSCs) spheroids.
View Article and Find Full Text PDF3D Print Addit Manuf
October 2024
Changchun Institute of Optics, Fine Mechanics and Physics (CIOMP), Chinese Academy of Sciences, Changchun, China.
This article presents a fabrication strategy on the structural design, optimization, additive manufacturing, and processing of metal mirror. Specifically, the study showcases the topology design of a metal mirror with diameter of 200 mm, the additive manufacturing of standard aluminum-based powder (AlSi10Mg), the high-precision single-point diamond turning process of the surface. By setting the feasible domain partition, a topology optimization model suitable for metal additive manufacturing and subsequent surface shaping was constructed, which takes into account the multi-load machining load conditions of single-point diamond turning technology and the material topology representation of standard support structures for additive manufacturing.
View Article and Find Full Text PDFJ Stomatol Oral Maxillofac Surg
December 2024
Department of Auricular Reconstruction, Plastic Surgery Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, PR China.
Backgound: The positioning of the reconstructed ear in ear reconstruction is a crucial step that directly affects the surgical outcome.This study employs the residual ear tissue as a reference, in conjunction with three-dimensional(3D)printing model of the normal ear's mirror image corresponding to the microtia ear, to facilitate precise positioning during the reconstruction of the ear.
Methods: This study established a 3D model group and a control group.
Cureus
November 2024
Maxillofacial Surgery, Centro Hospitalar e Universitário de Coimbra, Coimbra, PRT.
This article discusses the application of three-dimensional (3D) printing in reconstructing the orbital floor of a middle-aged male patient who suffered an orbital fracture due to a fall. A virtual 3D model of the fractured orbit was created using open-source software, allowing for the planning of the defect reconstruction by mirroring the contralateral orbit. A metal reconstruction plate was then molded based on the 3D printed model, sterilized, and utilized during surgery, which resulted in reduced surgical time and improved adaptation.
View Article and Find Full Text PDFDevelopment
December 2024
Institute of Biomedical Engineering, University of Toronto, Toronto M5S 3G9, ON, Canada.
This Review explores the rapidly evolving field of bioengineered vasculature, a key area of focus in tissue engineering and regenerative medicine. The broad relevance of this topic is attributed to its impacts on a wide range of biological processes, enabling studies in tissue development, fundamental biology and drug discovery, and the applications in tissue engineering and regenerative medicine. We outline the design criteria for bioengineered vasculature and the methodologies for constructing these systems by self-assembly and in microfluidics, organs-on-a-chip and macroscale tubular systems that often rely on biofabrication approaches such as 3D printing.
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