PEAK SURGICAL
Proximal Humerus Locking Plate Flat with 4–14 Hole Shoulder Fixation Range
Proximal Humerus Locking Plate Flat with 4–14 Hole Shoulder Fixation Range
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Proximal Humerus Locking Plate Flat, SKU Proximal Humerus Locking Plate Flat 4 to14 Holes, is an orthopedic implant plate manufactured in stainless steel and titanium options for proximal humerus fracture fixation and shoulder reconstruction procedures. The listed flat head configurations include 4 holes, 5 holes, 6 holes, 7 holes, 8 holes, 9 holes, 10 holes, 11 holes, 12 holes, 13 holes, and 14 holes, allowing selection across compact, routine, and extended proximal humeral constructs. The visible implant design includes a flat proximal head, contoured shaft, clustered screw holes, elongated combination openings, countersunk seating zones, and a smooth machined surface for controlled intraoperative handling. It is used during surgical neck fracture stabilization, greater tuberosity fixation, metaphyseal comminution support, proximal humeral osteotomy stabilization, nonunion reconstruction, and selected veterinary shoulder fracture repair. Orthopedic trauma surgeons, shoulder reconstruction specialists, sports trauma teams, hospitals, clinics, distributors, and veterinary orthopedic services can use this implant within CE, ISO 13485, and FDA-compliant procurement workflows.
Flat Head Geometry and Proximal Screw Distribution
The flat head configuration is designed for proximal humeral fixation where the surgeon needs broad clustered screw placement without a narrow or hook-based proximal profile. The proximal hole group supports multiple screw trajectories into the humeral head, greater tuberosity region, surgical neck, and metaphyseal segment, helping distribute fixation across cancellous bone and short fragments. The contoured shaft extends distally along the lateral humeral cortex and provides a stable transition from the head cluster to the diaphyseal support zone. Elongated combination openings along the shaft allow controlled placement and compression or locking sequence planning before final screw insertion. Countersunk hole geometry helps screw heads seat within the implant surface after tightening, reducing prominence beneath the deltoid and adjacent soft-tissue envelope. The flat head is selected when the plate footprint must support multiple proximal fixation points while maintaining a controlled implant profile. This geometry supports angular stability, fragment capture, and shaft alignment during shoulder fracture reconstruction.
Shoulder Fracture Fixation and Reconstruction Workflow
In operative workflow, Proximal Humerus Locking Plate Flat is introduced after deltopectoral or deltoid-splitting exposure, fracture assessment, reduction, tuberosity control, and provisional fixation have established the intended construct. During surgical neck fracture fixation, the shaft is aligned along the lateral humeral cortex while the proximal cluster is positioned to capture the humeral head segment. In three-part fracture patterns, proximal screws support the head and tuberosity fragments while shaft fixation maintains alignment across the metaphyseal transition. For greater tuberosity involvement, the implant works with reduction sutures, clamps, or temporary wires before final screw placement. In osteotomy or nonunion reconstruction, the plate maintains the planned relationship between proximal and shaft segments after bone preparation. Veterinary orthopedic teams can apply the same fixation principles when implant length, material, and screw system match the planned repair. Final assessment includes fluoroscopic screw length review, head penetration check, shoulder motion clearance, irrigation, and layered closure.
Selection Across 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, and 14 Hole Options
The 4 and 5 hole plates are selected for compact proximal humerus fractures where the shaft segment allows shorter fixation and the surgical exposure favors a smaller construct. The 6 and 7 hole options support routine proximal humeral fracture fixation with additional diaphyseal purchase for surgical neck and metaphyseal patterns. The 8 and 9 hole configurations provide broader load distribution when comminution extends distally or when tuberosity fixation requires a longer shaft support zone. The 10 and 11 hole plates are selected when the fracture line or osteotomy requires extended fixation beyond the proximal metaphysis. The 12, 13, and 14 hole options support long bridging constructs, segmental extension, revision fixation, nonunion reconstruction, and selected veterinary orthopedic repairs involving larger humeral anatomy. Hole-count selection is guided by fracture morphology, bone quality, proximal fragment size, tuberosity involvement, shaft extension, and the screw inventory available in the operating room implant system.
Implant Material, Sterile Handling, and Procurement Compliance
Stainless steel provides rigid fixation behavior and familiar handling for orthopedic trauma inventories, while titanium offers an alternate implant material for facilities managing mixed shoulder fixation systems. The smooth machined finish supports screw seating, visual inspection, and controlled handling during sterile tray preparation. Countersunk openings and elongated shaft holes require inspection before use so the selected screws seat correctly and the implant surface remains free of handling damage. The plate is managed through validated hospital implant handling, packaging, and sterilization workflows before implantation according to facility protocol. After implantation, removal, sterile-field contamination, or loss of sterile integrity, the implant is not returned to reusable instrument circulation. CE marking, ISO 13485 manufacturing controls, and FDA procurement context support purchasing files for hospitals, clinics, distributors, and orthopedic supply departments. The $17.60 price, one-piece MOQ, OEM availability, one-year warranty framework, and return or replacement support help procurement teams manage shoulder fixation inventory and distributor catalog requirements.
| SKU | Proximal Humerus Locking Plate Flat 4 to14 Holes |
|---|---|
| Product Name | Proximal Humerus Locking Plate Flat |
| Price | $17.60 |
| Size/Gauge Variants | 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, and 14 hole flat head configurations |
| Instrument Category | Orthopedic proximal humerus locking implant plate |
| Procedure | Proximal humerus fracture fixation, surgical neck fracture stabilization, greater tuberosity fixation, metaphyseal comminution support, proximal humeral osteotomy stabilization, nonunion reconstruction, veterinary shoulder fracture repair |
| Material | Stainless steel and titanium |
| Finish | Smooth machined implant finish |
| Sterilization | Managed through validated hospital implant sterilization workflow before implantation |
| Instrument Classification | Orthopedic implant plate |
| Reusable | No; single-use implant after sterile implantation |
| Certifications | CE, ISO 13485, FDA |
| Warranty | 1 year |
| MOQ | 1 piece |
| OEM / Custom Orders | OEM available for procurement and distributor requirements |
| After-Sale Service | Return and replacement support |
How does Proximal Humerus Locking Plate Flat differ from Proximal Humerus Locking Plate Narrow?
Proximal Humerus Locking Plate Flat uses a broader flat head configuration for clustered proximal humeral fixation. Proximal Humerus Locking Plate Narrow has a reduced proximal footprint for cases where a smaller lateral implant profile is preferred. The flat version is selected when the surgeon wants broader proximal screw distribution across the humeral head and metaphyseal region. The narrow version is selected when soft-tissue profile, bony anatomy, or surgical approach favors a slimmer head. Proximal Humerus Locking Plate Flat still provides multiple shaft hole options for extended construct planning. The clinically relevant difference is proximal head footprint, screw distribution strategy, and implant profile beneath the shoulder soft-tissue envelope.
Which hole count should be selected for proximal humerus fixation?
Proximal Humerus Locking Plate Flat is available across 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, and 14 hole flat head configurations. Short 4 and 5 hole plates are selected for compact fractures with limited shaft extension. The 6 and 7 hole options support routine surgical neck and metaphyseal fixation. The 8, 9, 10, and 11 hole plates provide additional diaphyseal purchase when fracture extension or bone quality requires broader support. The 12, 13, and 14 hole configurations are selected for long bridging constructs, nonunion reconstruction, revision fixation, and selected veterinary orthopedic repairs. Selection depends on fracture morphology, humeral shaft extension, tuberosity involvement, implant length requirement, and operating room screw system planning.
How do CE, ISO 13485, and FDA details support procurement?
Proximal Humerus Locking Plate Flat is supplied with CE, ISO 13485, and FDA procurement context for orthopedic implant purchasing. CE marking supports conformity documentation for healthcare markets requiring European medical device references. ISO 13485 indicates manufacturing under a medical device quality management system with controlled production and traceability. FDA procurement context supports hospitals, clinics, and distributors serving United States orthopedic supply channels. These details assist tender submissions, vendor onboarding, operating room inventory approval, and distributor catalog documentation. The $17.60 price, one-piece MOQ, OEM availability, and one-year warranty framework support replacement inventory and shoulder fixation tray planning.
How are the locking holes and elongated shaft openings used intraoperatively?
The elongated shaft openings can be used early in placement to help position the plate after fracture reduction and provisional fixation. The surgeon can refine plate height, rotation, and shaft alignment before final screw insertion. Proximal locking holes accept compatible screws that engage the implant and create angular stability across the humeral head and metaphyseal segment. Shaft screws then secure the construct along the lateral humeral cortex according to the selected hole count. Proximal Humerus Locking Plate Flat is applied under direct visualization and fluoroscopic confirmation before final tightening. Final assessment includes screw length, trajectory, head penetration review, tuberosity reduction, shoulder motion clearance, and implant seating.
What should hospitals and distributors consider before ordering this implant?
Hospitals should select Proximal Humerus Locking Plate Flat according to hole count, material preference, screw system, proximal humerus fracture workload, and shoulder reconstruction inventory needs. Stainless steel and titanium options allow procurement teams to align ordering with existing orthopedic implant protocols. Unused plates are managed through validated implant handling, packaging, and sterilization workflows before surgery. After implantation or sterile-field contamination, the plate is treated as a single-use implant and is not returned to reusable tray circulation. Distributors can stock available flat head configurations to support trauma, shoulder reconstruction, veterinary, and teaching hospital demand. The one-piece MOQ, carton-box packing, OEM availability, warranty framework, and return or replacement service support practical inventory planning.


