1.O-arm navigation versus C-arm navigation for guiding percutaneous long sacroiliac screws placement in treatment of Denis type Ⅱ sacral fractures.
Wei ZHOU ; Guodong WANG ; Xuan PEI ; Zhixun FANG ; Yu CHEN ; Suyaolatu BAO ; Jianan CHEN ; Ximing LIU
Chinese Journal of Reparative and Reconstructive Surgery 2024;38(1):28-34
OBJECTIVE:
To compare the effectiveness of O-arm navigation and C-arm navigation for guiding percutaneous long sacroiliac screws in treatment of Denis type Ⅱ sacral fractures.
METHODS:
A retrospective study was conducted on clinical data of the 46 patients with Denis type Ⅱ sacral fractures between April 2021 and October 2022. Among them, 19 patients underwent O-arm navigation assisted percutaneous long sacroiliac screw fixation (O-arm navigation group), and 27 patients underwent C-arm navigation assisted percutaneous long sacroiliac screw fixation (C-arm navigation group). There was no significant difference in gender, age, causes of injuries, Tile classification of pelvic fractures, combined injury, the interval from injury to operation between the two groups ( P>0.05). The intraoperative preparation time, the placement time of each screw, the fluoroscopy time of each screw during placement, screw position accuracy, the quality of fracture reduction, and fracture healing time were recorded and compared, postoperative complications were observed. Pelvic function was evaluated by Majeed score at last follow-up.
RESULTS:
All operations were completed successfully, and all incisions healed by first intention. Compared to the C-arm navigation group, the O-arm navigation group had shorter intraoperative preparation time, placement time of each screw, and fluoroscopy time, with significant differences ( P<0.05). There was no significant difference in screw position accuracy and the quality of fracture reduction ( P>0.05). There was no nerve or vascular injury during screw placed in the two groups. All patients in both groups were followed up, with the follow-up time of 6-21 months (mean, 12.0 months). Imaging re-examination showed that both groups achieved bony healing, and there was no significant difference in fracture healing time between the two groups ( P>0.05). During follow-up, there was no postoperative complications, such as screw loosening and breaking or loss of fracture reduction. At last follow-up, there was no significant difference in pelvic function between the two groups ( P>0.05).
CONCLUSION
Compared with the C-arm navigation, the O-arm navigation assisted percutaneous long sacroiliac screws for the treatment of Denis typeⅡsacral fractures can significantly shorten the intraoperative preparation time, screw placement time, and fluoroscopy time, improve the accuracy of screw placement, and obtain clearer navigation images.
Humans
;
Fracture Fixation, Internal/methods*
;
Retrospective Studies
;
Imaging, Three-Dimensional
;
Bone Screws
;
Surgery, Computer-Assisted
;
Tomography, X-Ray Computed
;
Spinal Fractures/surgery*
;
Fractures, Bone/surgery*
;
Pelvic Bones/injuries*
;
Postoperative Complications
;
Neck Injuries
2.Research progress in the mechanism and treatment of osteosarcoma.
Jichao BIAN ; Yang LIU ; Xiaowei ZHAO ; Chunyang MENG ; Yuanmin ZHANG ; Yangmiao DUAN ; Guodong WANG
Chinese Medical Journal 2023;136(20):2412-2420
Osteosarcoma (OS) is the most common primary malignant bone tumor that more commonly occurs in children and adolescents. The most commonly used treatment for OS is surgery combined with chemotherapy, but the treatment outcomes are typically unsatisfactory. High rates of metastasis and post-treatment recurrence rates are major challenges in the treatment of OS. This underlines the need for studying the in-depth characterization of the pathogenetic mechanisms of OS and development of more effective therapeutic modalities. Previous studies have demonstrated the important role of the bone microenvironment and the regulation of signaling pathways in the occurrence and development of OS. In this review, we discussed the available evidence pertaining to the mechanisms of OS development and identified therapeutic targets for OS. We also summarized the available treatment modalities for OS and identified future priorities for therapeutics research.
Child
;
Adolescent
;
Humans
;
Bone Neoplasms/drug therapy*
;
Signal Transduction
;
Bone and Bones/metabolism*
;
Treatment Outcome
;
Osteosarcoma/drug therapy*
;
Tumor Microenvironment
3.Meta-analysis of condylar changes produced by a Twin-block appliance in Class Ⅱ malocclusion.
Yulin LI ; Jingchen XU ; Xiaoge JIANG ; Song CHEN
West China Journal of Stomatology 2023;41(4):463-470
OBJECTIVES:
To evaluate the effects of a Twin-block appliance on the condyles of patients with ClassⅡmalocclusion by conducting a systematic review and a Meta-analysis.
METHODS:
Pubmed, Embase, Cochrane Library, Chinese BioMedical Literature Database, China National Knowledge Infrastructure, and VIP Database were electronically searched. Randomized controlled trials, controlled clinical trials, and single-arm trials on condylar changes produced by a Twin-block appliance in patients with ClassⅡmalocclusion were included. Two reviewers independently extracted and assessed the risk of bias. Meta-analyses were conducted with Review Manager 5.3.
RESULTS:
Eight studies were included; among which, seven were of high quality. After treatment with a twin block appliance, condyles moved anteriorly. The anterior joint spaces decreased (P<0.000 01), whereas the posterior spaces increased (P<0.000 01). The superior spaces were not changed (P=0.11). Moreover, a significant difference was observed in the increase of the condylar space index (P<0.000 01). After treatment, the anteroposterior diameters of the condyles and condylar height increased (P=0.000 2 and P<0.000 01, respectively). By contrast, no significant changes were discovered in the medial external diameters of the condyles (P=0.42).
CONCLUSIONS
A Twin-block appliance can promote the growth of a condyle in the posterior and upper direction and move it forward in favor of the correction of Class Ⅱ malocclusion.
Humans
;
Malocclusion, Angle Class II/therapy*
;
Temporomandibular Joint
;
Bone and Bones
;
China
;
Orthodontic Appliances, Functional
;
Cephalometry
4.Application of gelatin microspheres in bone tissue engineering.
Yuanhang ZHAI ; Jing LI ; Abudukahaer ABUDUAINI ; Zijiao YANG ; Zhiruo YU ; Yixuan CHEN ; Hao LIU ; Xin RONG
Chinese Journal of Biotechnology 2023;39(9):3724-3737
Gelatin microspheres were discussed as a scaffold material for bone tissue engineering, with the advantages of its porosity, biodegradability, biocompatibility, and biosafety highlighted. This review discusses how bone regeneration is aided by the three fundamental components of bone tissue engineering-seed cells, bioactive substances, and scaffold materials-and how gelatin microspheres can be employed for in vitro seed cell cultivation to ensure efficient expansion. This review also points out that gelatin microspheres are advantageous as drug delivery systems because of their multifunctional nature, which slows drug release and improves overall effectiveness. Although gelatin microspheres are useful for bone tissue creation, the scaffolds that take into account their porous structure and mechanical characteristics might be difficult to be created. This review then discusses typical techniques for creating gelatin microspheres, their recent application in bone tissue engineering, as well as possible future research directions.
Tissue Engineering/methods*
;
Tissue Scaffolds/chemistry*
;
Gelatin/chemistry*
;
Microspheres
;
Bone and Bones
;
Porosity
5.Comparison on Performance of Quantitative Ultrasound and Dual-Energy X-ray Absorptiometry in Evaluating Bone Health of Adults Aged 18-40 Years.
Yu-Xian KUANG ; Hong CHENG ; Yi-Ying ZHENG ; Wei-Ye CHEN ; Zhen-Xin MA ; Gao-Yong ZOU ; Ding ZENG ; Jie MI ; Li LIU
Acta Academiae Medicinae Sinicae 2023;45(5):737-742
Objective To compare the consistency of quantitative ultrasound(QUS)and dual-energy X-ray absorptiometry(DXA)in measuring bone mineral density(BMD)of adults aged 18-40 years in Guangzhou and evaluate the diagnostic value of QUS for identifying low bone mass.Methods DXA was employed to measure the BMD and QUS to measure the speed of sound(SOS)in 731 participants.The Bland-Altman analysis was performed to evaluate the consistency of Z scores between SOS and BMD.With the BMD Z ≤-2.00 as the diagnostic criterion for low bone mass,the receiver operating characteristics curve of QUS was established,and the area under the curve(AUC)and the sensitivity,specificity,and correct diagnostic index for the optimal cut-off of SOS Z score were calculated.Results The results of Bland-Altman analysis showed that the mean differences in the Z scores of SOS and BMD in males and females were 1.27(-0.94 to 3.47)and 0.93(-1.33 to 3.18),respectively.The AUC of SOS Z score in the diagnosis of low bone mass in males and females was 0.734(95%CI=0.380-0.788)and 0.679(95%CI=0.625-0.732),respectively.In males,the optimal cut-off of SOS Z score for low bone mass was -0.35,with the sensitivity,specificity,and correct diagnostic index of 64.1%,68.6%,and 0.327,respectively.In females,the optimal cut-off value of SOS Z scores for low bone mass was -1.14,with the sensitivity,specificity,and correct index of 73.9%,54.8%,and 0.285,respectively.Conclusion QUS and DXA show poor consistency in the diagnosis of BMD in the adults aged 18-40 years in Guangzhou,while QUS demonstrates an acceptable value in identifying low bone mass.
Male
;
Female
;
Adult
;
Humans
;
Absorptiometry, Photon/methods*
;
Bone Density
;
Ultrasonography
;
Bone and Bones
;
ROC Curve
;
Sensitivity and Specificity
6.Research progress on biocomposites based on bioactive glass.
Yu PENG ; Liang LAN ; Junyu MU ; Sha HOU ; Lijia CHENG
Journal of Biomedical Engineering 2023;40(4):805-811
Bioactive glass (BG) has been widely used in the preparation of artificial bone scaffolds due to its excellent biological properties and non-cytotoxicity, which can promote bone and soft tissue regeneration. However, due to the brittleness, poor mechanical strength, easy agglomeration and uncontrollable structure of glass material, its application in various fields is limited. In this regard, most current researches mainly focus on mixing BG with organic or inorganic materials by freeze-drying method, sol-gel method, etc., to improve its mechanical properties and brittleness, so as to increase its clinical application and expand its application field. This review introduces the combination of BG with natural organic materials, metallic materials and non-metallic materials, and demonstrates the latest technology and future prospects of BG composite materials through the development of scaffolds, injectable fillers, membranes, hydrogels and coatings. The previous studies show that the addition of BG improves the mechanical properties, biological activity and regeneration potential of the composites, and broadens the application of BG in the field of bone tissue engineering. By reviewing the recent BG researches on bone regeneration, the research potential of new materials is demonstrated, in order to provide a reference for future related research.
Bone Regeneration
;
Bone and Bones
;
Freeze Drying
;
Glass
;
Hydrogels
7.Research progress on the design of bone scaffolds with different single cell structures.
Yadi SUN ; Yan WANG ; Liyun ZHOU ; Yiyang LI ; Jiahui SHEN ; Benchao DONG ; Peichuan YANG ; Yan LI ; Jianxiong MA ; Xinlong MA
Chinese Journal of Reparative and Reconstructive Surgery 2023;37(8):1037-1041
OBJECTIVE:
To review the research progress of design of bone scaffolds with different single cell structures.
METHODS:
The related literature on the study of bone scaffolds with different single cell structures at home and abroad in recent years was extensively reviewed, and the research progress was summarized.
RESULTS:
The single cell structure of bone scaffold can be divided into regular cell structure, irregular cell structure, cell structure designed based on topology optimization theory, and cell structure designed based on triply periodic minimal surface. Different single cell structures have different structural morphology and geometric characteristics, and the selection of single cell structure directly determines the mechanical properties and biological properties of bone scaffold. It is very important to choose a reasonable cell structure for bone scaffold to replace the original bone tissue.
CONCLUSION
Bone scaffolds have been widely studied, but there are many kinds of bone scaffolds at present, and the optimization of single cell structure should be considered comprehensively, which is helpful to develop bone scaffolds with excellent performance and provide effective support for bone tissue.
Bone and Bones
;
Tissue Scaffolds
8.Research progress in influence of microstructure on performance of triply-periodic minimal surface bone scaffolds.
Yadi SUN ; Jianxiong MA ; Yan WANG ; Benchao DONG ; Peichuan YANG ; Yan LI ; Yiyang LI ; Liyun ZHOU ; Jiahui SHEN ; Xinlong MA
Chinese Journal of Reparative and Reconstructive Surgery 2023;37(10):1314-1318
OBJECTIVE:
To summarize the influence of microstructure on performance of triply-periodic minimal surface (TPMS) bone scaffolds.
METHODS:
The relevant literature on the microstructure of TPMS bone scaffolds both domestically and internationally in recent years was widely reviewed, and the research progress in the imfluence of microstructure on the performance of bone scaffolds was summarized.
RESULTS:
The microstructure characteristics of TPMS bone scaffolds, such as pore shape, porosity, pore size, curvature, specific surface area, and tortuosity, exert a profound influence on bone scaffold performance. By finely adjusting the above parameters, it becomes feasible to substantially optimize the structural mechanical characteristics of the scaffold, thereby effectively preempting the occurrence of stress shielding phenomena. Concurrently, the manipulation of these parameters can also optimize the scaffold's biological performance, facilitating cell adhesion, proliferation, and growth, while facilitating the ingrowth and permeation of bone tissue. Ultimately, the ideal bone fusion results will obtain.
CONCLUSION
The microstructure significantly and substantially influences the performance of TPMS bone scaffolds. By deeply exploring the characteristics of these microstructure effects on the performance of bone scaffolds, the design of bone scaffolds can be further optimized to better match specific implantation regions.
Tissue Scaffolds/chemistry*
;
Tissue Engineering/methods*
;
Bone and Bones
;
Porosity
9.Effectiveness on treatment of metacarpal avulsion fracture with Kirschner wire buckling combined with bone fixation.
Huanyou YANG ; Bin WANG ; Lei HUANG ; Lin GUO ; Zhiwang LIU ; Hong LI ; Jianmei MIAO
Chinese Journal of Reparative and Reconstructive Surgery 2023;37(11):1390-1393
OBJECTIVE:
To summarize the effectiveness of Kirschner wire buckling combined with bone fixation in the treatment of metacarpal avulsion fracture.
METHODS:
The clinical data of 35 patients of metacarpal avulsion fracture admitted between March 2017 and June 2022 were retrospectively analyzed. There were 22 males and 13 females; the age ranged from 20 to 55 years, with an average of 31.6 years. There were 17 cases of the second metacarpal avulsion fracture, 6 cases of the fourth metacarpal avulsion fracture, and 12 cases of the fifth metacarpal avulsion fracture. The causes of injury included 21 cases of strangulation, 8 cases of sprain, and 6 cases of sports injury. X-ray film examination showed that the size of the avulsion fracture of metacarpal bone ranged from 0.30 cm×0.20 cm to 0.55 cm×0.45 cm. The total active motion (TAM) of the injured finger before operation was (154.00±17.38)°. The time from injury to operation was 3-10 days, with an average of 5.8 days. Follow-up regularly after operation, X-ray film and CT examination were performed to evaluate fracture healing and TAM of injured finger was measured. The finger function was evaluated by the trial standard of upper limb function evaluation of Hand Surgery Society of Chinese Medical Association.
RESULTS:
All the incisions healed by first intention. All 35 patients were followed up 9-36 months, with an average of 28 months. All metacarpal avulsion fractures achieved bony healing, and the healing time was 4-6 weeks, with an average of 4.8 weeks. The metacarpophalangeal joint of the patient was stable, without stiffness, and the flexion and extension activities were good. At last follow-up, the TAM of the injured finger reached (261.88±6.23)°, which was significantly different from that before operation ( t=-35.351, P<0.001). The finger function was evaluated according to the trial standard of upper limb function evaluation of the Society of Hand Surgery of Chinese Medical Association, and 33 cases were excellent and 2 cases were good, with an excellent and good rate of 100%.
CONCLUSION
The treatment of metacarpal avulsion fracture with Kirschner wire buckling combined with bone fixation has the advantages of less trauma, firm fixation, and less interference to the soft tissue around metacarpophalangeal joints, which is a good alternative method for the metacarpal avulsion fracture.
Male
;
Female
;
Humans
;
Young Adult
;
Adult
;
Middle Aged
;
Fractures, Avulsion/surgery*
;
Fracture Fixation, Internal/methods*
;
Metacarpal Bones/injuries*
;
Bone Wires
;
Retrospective Studies
;
Treatment Outcome
;
Fractures, Bone/surgery*
;
Hand Injuries
10.Bone/cartilage immunomodulating hydrogels: construction strategies and applications.
Maoyuan LI ; Guoshuang ZHENG ; Jiahui YANG ; Xiaofang CHEN ; Jianfeng XU ; Dewei ZHAO
Chinese Journal of Reparative and Reconstructive Surgery 2023;37(11):1423-1430
OBJECTIVE:
To review the research progress in the construction strategy and application of bone/cartilage immunomodulating hydrogels.
METHODS:
The literature related to bone/cartilage immunomodulating hydrogels at home and abroad in recent years was reviewed and summarized from the immune response mechanism of different immune cells, the construction strategy of immunomodulating hydrogels, and their practical applications.
RESULTS:
According to the immune response mechanism of different immune cells, the biological materials with immunoregulatory effect is designed, which can regulate the immune response of the body and thus promote the regeneration of bone/cartilage tissue. Immunomodulating hydrogels have good biocompatibility, adjustability, and multifunctionality. By regulating the physical and chemical properties of hydrogel and loading factors or cells, the immune system of the body can be purposively regulated, thus forming an immune microenvironment conducive to osteochondral regeneration.
CONCLUSION
Immunomodulating hydrogels can promote osteochondral repair by affecting the immunomodulation process of host organs or cells. It has shown a wide application prospect in the repair of osteochondral defects. However, more data support from basic and clinical experiments is needed for this material to further advance its clinical translation process.
Hydrogels
;
Cartilage
;
Bone and Bones
;
Tissue Engineering/methods*

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