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This four‑sided bone awl carries a square tapered tip that bites into cortical bone to start a pilot path for wires, pins, or screws. The 159mm straight shaft transmits axial force from a controlled mallet strike or manual press, and the faceted tip resists skiving on curved bone surfaces. Stainless‑steel construction holds the point geometry through repeat sharpening and sterilization.
Features & Benefits
This bone chip packer features a 6.3mm diameter round face with a hexagonal handle, designed for controlled impaction of bone graft material into prepared defects and fusion sites. The 248mm overall length and shaped working surface ensure predictable bone chip seating and consolidation.
Designed for fine graft placement in narrow defects, this 2mm by 9mm bone chip packer maintains precision during delicate vertebral body or metaphyseal void filling. The slender 2mm profile fits into confined spaces such as vertebral body foramina or tight fusion sites, while the hexagonal handle assures secure handling during prolonged packing procedures. Stainless steel durability meets the demands of multiple reprocessing cycles.
The bone chip packer, 3.2mm thick by 16mm wide, is designed to condense and position bone graft material into vertebral bodies, metaphyseal defects, or other cavitary lesions. The straight profile and hexagonal handle provide stable grip during repeated packing motions, and the compact tip geometry allows access to confined spaces such as the intramedullary canal or fusion bed. Stainless steel construction withstands the mechanical forces of impaction.
The bone chip packer, 6 × 19mm with hexagonal handle and 250mm extended length, facilitates controlled placement and compression of bone graft chips during spinal fusion and bone reconstruction procedures. Hexagonal handle improves rotational control during packing motions. Extended length enables access to deep vertebral fusion sites while maintaining operator visibility.
The 6mm by 9mm bone chip packer accommodates larger graft volumes while maintaining controlled placement in metaphyseal regions, vertebral bodies, and tibial/femoral defects. The increased thickness provides mechanical rigidity during impaction without the risk of buckling, and the hexagonal handle ensures secure grip during repetitive packing strokes. Stainless steel construction endures the mechanical demands of impaction and thorough sterilization.
The Bone Compactor/Impactor features a replaceable white nylon head with criss‑cross serration for atraumatic consolidation and controlled compaction of bone surfaces, particularly during vertebral body fusion and periosteal work. The 20mm diameter and 165mm length suit confined spinal spaces. Stainless steel shaft provides structural integrity.
This bone curette features a forward‑angled shaft and 3.6mm oval cup, optimizing curettage in orthopedic and spinal cavities where a slight working angle improves visualization and reach. The oval profile efficiently engages bone edges, and the 254mm length extends access to deeper sites. Stainless steel maintains edge sharpness and dimensional accuracy across many cases.
Straight bone cutting forceps cleanly transect cortical and cancellous bone during osteotomy and fragment sizing. The robust jaws slice through dense bone, and the straight configuration enables axial cutting force perpendicular to the bone surface. At 146mm, they are suited for hand‑held cutting in open procedures.
Large bone hooks with 8 × 30mm head and grip handle are designed for substantial bone and soft tissue retraction in major orthopedic exposures. The broad hook surface distributes force across large cortical surfaces, minimizing stress concentration and periosteal damage. At 229mm, the length accommodates deep abdominal and spinal approaches.
This large bone hook with a single sharp prong and T‑handle is designed for robust elevation and retraction of femoral shaft and proximal femoral fragments during open reduction. The 178mm length delivers reach into deep thigh exposures, while the T‑handle configuration provides ergonomic mechanical advantage for sustained single‑hand retraction. Stainless steel construction supports reliable reprocessing.
Medium bone hooks featuring an 11 × 22mm head with grip handle provide stable elevation of bone edges and soft tissue flaps in extremity and spinal exposures. The hook geometry adapts to vertebral lamina, spinous process, and bone cortex retraction without crushing underlying neurovascular structures. At 229mm, the shaft reaches moderately deep surgical fields.
This small bone hook with 6 × 13mm head geometry lifts and manipulates periosteum and cancellous bone during open reduction and internal fixation. The grip handle provides ergonomic control during prolonged retraction, while the compact head size navigates confined surgical spaces near articular cartilage edges and joint capsules. Stainless steel withstands repeated cleaning and sterilization.
The bone impactor with a 6.5 × 11.5mm offset head is designed for precise impaction of bone grafts, implants, or structural elements into metaphyseal defects and vertebral bodies during fusion procedures. The offset geometry angles the striking surface away from the surgeon's hand, protecting against rebound while the 216mm length provides clear sight lines and controlled hammer strokes. Stainless steel construction tolerates repeated impacts without deformation.
The lumbar bone impactor with a 10 × 13mm unguarded head is engineered for direct impaction of bone graft or implants into lumbar vertebral bodies and metaphyseal fusion sites. The unguarded design offers complete visualization of the impact zone and maximum surface contact with the graft, and the 223mm length provides biomechanically favorable leverage during hammer-driven impaction. Stainless steel durability ensures reliable service through repeated sterilization and use.
This double‑ended bone rasp at 220mm carries 13mm fine and coarse working ends, sized for graded bone shaping during orthopedic procedures. The double‑ended design steps the surgeon from coarse removal to fine finishing without an instrument exchange.
This double‑ended bone rasp provides controlled surface preparation across the periosteum and cortical bone. The complementary 3mm and 4mm working edges allow sequence rasping of surgical sites during fracture reduction and osteotomy work. Stainless steel construction supports repeated sterilization and reliable performance across dense bone work.
These bone reduction forceps carry curved jaws with one defined penetrating pointed tip and a long ratchet at 171mm, sized for grasping and reducing bone fragments during fracture fixation. The penetrating tip anchors into cortical bone, and the long ratchet holds reduction under sustained tension.
Bone reduction forceps with curved jaws and pointed tips enable precise fracture reduction and periosteal manipulation during orthopedic reconstruction. The long ratchet provides sustained compression without hand fatigue during final seating. The 135mm overall length supports stable control during complex multi‑fragment bone work.
These curved-jaw bone reduction forceps deliver smooth, controlled grasp along curved bone surfaces during complex pelvic and femoral reductions. The standard curve geometry follows natural anatomic contours, and the speed-lock mechanism enables quick closure without hand fatigue. The 229mm length provides stable, controlled reduction across deep surgical sites.
This curved bone reduction forceps features 10mm short serrated jaws and pointed tips for precise cortical edge alignment during fracture reduction. The 127mm compact length suits limited access fields while the serrated jaw surfaces maintain grip without slipping. Designed for controlled, atraumatic reduction of cortical and cancellous bone fragments.
Serrated jaws on this curved reduction forceps prevent slippage on periosteal or cancellous surfaces, while pointed tips allow precise engagement within fracture lines or narrow foramen. The 140mm overall length positions the instrument for ergonomic control during delicate realignment work at the vertebral margin or joint capsule. Reusable stainless steel maintains edge grip through cycles.
This compact curved bone reduction forceps measures just 140mm overall, making it well suited for intraoperative maneuvering in tight anatomic spaces where access is limited. The small size does not compromise jaw purchase; the curved profile facilitates control during subtle repositioning of bone fragments near vertebral bodies or joint capsule boundaries. Reusable stainless steel offers consistent performance across cases.
This long bone reduction forceps delivers a refined 0.035 inch tip profile for sensitive bone engagement during orthopedic reduction maneuvers. The extended length provides reach and leverage for complex fracture alignment, while the small tip enables precise contact at fracture reduction sites without excessive cortical disruption or soft‑tissue trauma.
With a 0.062 inch tip, this long bone reduction forceps provides larger surface contact for secure fracture engagement during complex multi‑fragment reduction scenarios. The extended length enables leverage across substantial fracture fields, and the refined tip geometry balances surface area with precision access. The stainless‑steel construction withstands repetitive reduction force.
This ratchet‑style bone reduction forceps features a two‑inch ratchet length that opens to four inches, enabling staged bone reduction during complex fracture fixation. The ratchet locks fragment position once alignment is achieved, freeing the surgeon to position fixation devices. The 203mm overall length and straight profile suit broader exposures where sustained reduction force is needed.
This straight bone retractor presents a 17mm blade for periosteal elevation and soft-tissue retraction along the bone surface during orthopedic exposures. The 220mm overall length reaches comfortably into the operative field while the contoured blade margin protects adjacent muscle and fascia from the bone edge. Stainless‑steel construction is built for dependable performance and lasting durability across repeat orthopedic reprocessing.
This ten‑millimeter X‑serrated bone tamp delivers intermediate graft‑compaction force during vertebral body and tibial plateau reconstruction. The serrated surface distributes striking force uniformly across cancellous bone without crushing or fragmenting the graft. The 159mm length maintains controlled depth during intravertebral work.
This 2mm bone tamp with X-serrated tip provides controlled compaction of bone graft and cancellous bone during fusion and reconstruction. The serrated geometry grips the bone surface without slipping, and the 160mm length enables precise, controlled tapping strokes. Stainless steel construction sustains routine sterilization and clinical reuse.
At 3mm width, this bone tamp with X-serrated tip compacts larger volumes of bone graft during extensive fusion and vertebral body reconstruction. The serrated surface prevents graft slippage, and the 160mm length supports controlled, powerful tapping. Stainless steel durability ensures reliable performance across many clinical cycles.