Objective: To investigate the effects of bone density, plate bending degree and proximal screw type on the stress fracture of clavicle hook.
Methods: Three sows weighing between 45 and 50 kg were selected, from which a total of 40 rivs were collected. The 15 ribs of sows were divided into 3 groups according to bone density and bone hardness with 5 rivs in each group. And then the 3 groups were fixed with 6-hole collarbone hook plates and 3 locking screws. Measure the maximum torsion force when the ribs were fractured by force. The same size 15 rids were divided into 3 groups, named forward bending group, 0° group(the angle between the plate surface and the rib surface) and reverse bending group. All fixed with 6-hole collarbone hook plates and locking screws to measure the maximum torsion force of rib stress fracture. Then the same size 10 rids were divided into 2 groups, the normal screw group and the locking screw group with 5 ribs in each group. Both groups were fixed with 6-hole collarbone hook plates and screws. The normal screw group was a normal screw, fixed in proximal end, and two locking screws. The locking screw group was fixed by locking screws. Measure the maximum torsion force of the two groups when the ribs fracture by force.
Results: In the bone density experiment, the torque force of hard bone group (104.51±6.27) N was greater than the normal bone group (75.04±3.81) N(=8.979, <0.05). The force of normal bone group was greater than the osteoporosis group (49.99±2.12) N(=12.832, <0.05). In the bending collarbone hook experiment, the order of the torque force generated by each group as follow:the forward bending group (343.59±6.18) N greater than the 0° group (106.01±5.29) N(=65.279, <0.05) greater than the reverse bending group (95.82±4.12) N(=3.398, <0.05). The force of the normal screw group (98.68±0.70) N was greater than the locking screw group (50.20±0.95) N(=91.484, <0.05). The data comparisons of each group were statistically significant.
Conclusion: Bone density, plate bending degree and proximal screw type had an impact on stress fracture of clavicle hook plate. Higher bone density, forward bending of the steel plate, and ordinary screws in proximal end can reduce the rates of stress fractures of clavicle hooks.
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http://dx.doi.org/10.12200/j.issn.1003-0034.20230132 | DOI Listing |
Zhongguo Gu Shang
January 2025
Ningbo Beilun People's Hospital, Ningbo 315800, Zhejiang, China.
Objective: To investigate the effects of bone density, plate bending degree and proximal screw type on the stress fracture of clavicle hook.
Methods: Three sows weighing between 45 and 50 kg were selected, from which a total of 40 rivs were collected. The 15 ribs of sows were divided into 3 groups according to bone density and bone hardness with 5 rivs in each group.
Sci Rep
January 2025
Departmant of Orthopedics and Traumatology, Liv Ulus Hospital, Istanbul, Turkey.
Locking plates have a rapidly growing process especially in the past decades and results are satisfactory especially in the osteoporotic bones compared to non-locking compression plates. There are many forms of failure in the fracture fixation of locking plates, and screw pull-out is one of the main failure reasons. In this study, we aim to investigate pull-out failure in locking plates using locking spongious screws.
View Article and Find Full Text PDFVet Comp Orthop Traumatol
January 2025
School of Engineering, University of Guelph, Guelph, Ontario, Canada.
Objective: To determine the effect of locking head inserts (LHI) on plate strain, stiffness, and deformation when applied to a 3.5-mm broad locking compression plate (LCP) in an open fracture-gap model.
Study Design: Six, 13-hole, 3.
Shoulder Elbow
January 2025
Department of Orthopaedic Surgery, Capio St Görans Hospital, Stockholm, Sweden.
Background: The aim of this study was to evaluate clinical results and complication rate in patients with proximal humeral fracture treated with Anatomical Locking Plate System (A.L.P.
View Article and Find Full Text PDFJ Orthop Case Rep
January 2025
Department of Orthopedics, Sree Balaji Medical College and Hospital, BIHER, Chromepet, Chennai, Tamil Nadu, India.
Introduction: Distal femur fractures present significant surgical challenges due to their complex anatomy and limited soft tissue coverage. Minimally invasive plate osteosynthesis (MIPO) has emerged as a promising alternative to traditional open techniques, aiming to reduce soft-tissue damage while maintaining stable fixation, particularly when used with locking plates.
Materials And Methods: This retrospective study analyzed 40 consecutive patients with distal femur fractures treated with MIPO and locking plates.
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