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DePuy Synthes cylindrical (spinal) titanium mesh cage
Cylindrical (Spinal) Titanium Mesh Cage, supplied by DePuy Synthes, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/cylindrical+titanium+mesh+cage/cylindrical+titanium+mesh+cage/pm37504836-180-20-25
Average 90 stars, based on 1 article reviews
cylindrical (spinal) titanium mesh cage - by Bioz Stars, 2026-09
90/100 stars

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Article Title: The Concept of Scaffold-Guided Bone Regeneration for the Treatment of Long Bone Defects: Current Clinical Application and Future Perspective.
Article Snippet: X-ray of a 29-year-old male with a segmental tibial defect and treatment for defin- itive fixation with an intramedullary nail and cylindrical titanium mesh cage (DePuy Synthes) (A).

Article Title: Case reports: management of large segmental tibial defects using a cylindrical mesh cage.
Article Snippet: We report a case series of three patients who sustained open Gustilo–Anderson Type IIIB tibia fractures associated with extensive segmental bone and soft tissue loss.. The patients initially were treated with serial wound irrigations, débridements, and external fixation.. After the soft tissue envelope was reconstructed successfully, each large segmental bone defect was reconstructed with a cylindrical titanium mesh cage packed with a composite of cancellous allograft and demineralized bone matrix putty and stabilized with a statically locked intramedullary nail.

Article Title: The Concept of Scaffold-Guided Bone Regeneration for the Treatment of Long Bone Defects: Current Clinical Application and Future Perspective.
Article Snippet: Following these case reports, major trauma centres worldwide began to apply cylindrical titanium mesh implants either as the previously described cylindrical (spinal) titanium mesh cage (DePuy-Synthes, Warsaw, Indiana) as reported in 17 patients by Attias et al. [126] or as a cylindrical 3D additive manufactured titanium mesh cages as reported in 19 patients by Pobloth et al. [129].

Article Title: Management of extra-articular segmental defects in long bone using a titanium mesh cage as an adjunct to other methods of fixation
Article Snippet: Patients and Methods A total of 17 patients (aged 17 to 61 years) treated for a segmental long bone defect by nail or plate fixation and an adjunctive TMC were included.. The bone defects treated were in the tibia (nine), femur (six), radius (one), and humerus (one).. The mean length of the segmental bone defect was 8.4 cm (2.2 to 13); the mean length of the titanium mesh cage was 8.3 cm (2.6 to 13).



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First case report from 1999 by Cobos et al. on the treatment of a patient (34-year-old) with post-traumatic segmental defect of the tibia (8.5 cm) with a cylindrical (spinal) titanium mesh cage in combination with cancellous bone allograft and demineralized bone matrix putty (Grafton) stabilized with an intramedullary nail. The titanium mesh cage was trimmed to 9 cm (diameter 2.2 cm) to fit the defect size and packed with allograft prior to implantation ( A ). Posterolateral callus consolidation around the cage on X-ray (views: ( B1 ): anterior–posterior; ( B2 ): lateral) 12 months post-reconstruction. Standing patient ( C1 ) and standing on the operated limb ( C2 ) at one-year follow-up. Adapted from Ref. , reproduced with permission from John Wiley & Sons, Inc.

Journal: Journal of Functional Biomaterials

Article Title: The Concept of Scaffold-Guided Bone Regeneration for the Treatment of Long Bone Defects: Current Clinical Application and Future Perspective

doi: 10.3390/jfb14070341

Figure Lengend Snippet: First case report from 1999 by Cobos et al. on the treatment of a patient (34-year-old) with post-traumatic segmental defect of the tibia (8.5 cm) with a cylindrical (spinal) titanium mesh cage in combination with cancellous bone allograft and demineralized bone matrix putty (Grafton) stabilized with an intramedullary nail. The titanium mesh cage was trimmed to 9 cm (diameter 2.2 cm) to fit the defect size and packed with allograft prior to implantation ( A ). Posterolateral callus consolidation around the cage on X-ray (views: ( B1 ): anterior–posterior; ( B2 ): lateral) 12 months post-reconstruction. Standing patient ( C1 ) and standing on the operated limb ( C2 ) at one-year follow-up. Adapted from Ref. , reproduced with permission from John Wiley & Sons, Inc.

Article Snippet: The first clinical application of cylindrical (spinal) titanium mesh cages (DePuy Motech, Warsaw, IN, USA) was described in 1999 for combination with cancellous bone allograft and demineralized bone matrix for the reconstruction of posttraumatic diaphyseal tibial defects in two patients [ ].

Techniques:

Exemplary challenges and failures in the use of cylindrical titanium mesh cage implants for bone defects. X-ray of a 29-year-old male with a segmental tibial defect and treatment for definitive fixation with an intramedullary nail and cylindrical titanium mesh cage (DePuy Synthes) ( A ). The asterisks in A1 highlight the graft material four months after grafting, which is packed into and on the outer surface of the cylindrical mesh implant. After 90 months, there is stagnation in the bony consolidation on the surface of the implant (asterisks) compared to plain radiography findings after four months and, in particular, no evidence of a bony structure within the cylindrical titanium mesh cage (triangles) (( B1) : anterior–posterior; ( B2 ): lateral). Patient-specific titanium mesh implant (DePuy Synthes) packed with RIA system graft material implanted to treat a femoral defect ( C ). Twenty-eight months after implantation, a subtle but distinctive callus formed bridging the defect on the implant surface (( D ), asterisks indicating bone bridge). However, no bony consolidation was observed in the inner part of the titanium mesh. The triangles in D indicate that the mesh structure is radiolucent, which would not be possible if ABG remodelling and thus successful regeneration of the graft material of the RIA system had occurred. ( A , B ): reproduced from Supplement of Ref. , with permission from the British Editorial Society of Bone & Joint Surgery; ( C ): reproduced from Supplement of Ref. , reprinted with permission from American Association for the Advancement of Science (AAAS).

Journal: Journal of Functional Biomaterials

Article Title: The Concept of Scaffold-Guided Bone Regeneration for the Treatment of Long Bone Defects: Current Clinical Application and Future Perspective

doi: 10.3390/jfb14070341

Figure Lengend Snippet: Exemplary challenges and failures in the use of cylindrical titanium mesh cage implants for bone defects. X-ray of a 29-year-old male with a segmental tibial defect and treatment for definitive fixation with an intramedullary nail and cylindrical titanium mesh cage (DePuy Synthes) ( A ). The asterisks in A1 highlight the graft material four months after grafting, which is packed into and on the outer surface of the cylindrical mesh implant. After 90 months, there is stagnation in the bony consolidation on the surface of the implant (asterisks) compared to plain radiography findings after four months and, in particular, no evidence of a bony structure within the cylindrical titanium mesh cage (triangles) (( B1) : anterior–posterior; ( B2 ): lateral). Patient-specific titanium mesh implant (DePuy Synthes) packed with RIA system graft material implanted to treat a femoral defect ( C ). Twenty-eight months after implantation, a subtle but distinctive callus formed bridging the defect on the implant surface (( D ), asterisks indicating bone bridge). However, no bony consolidation was observed in the inner part of the titanium mesh. The triangles in D indicate that the mesh structure is radiolucent, which would not be possible if ABG remodelling and thus successful regeneration of the graft material of the RIA system had occurred. ( A , B ): reproduced from Supplement of Ref. , with permission from the British Editorial Society of Bone & Joint Surgery; ( C ): reproduced from Supplement of Ref. , reprinted with permission from American Association for the Advancement of Science (AAAS).

Article Snippet: The first clinical application of cylindrical (spinal) titanium mesh cages (DePuy Motech, Warsaw, IN, USA) was described in 1999 for combination with cancellous bone allograft and demineralized bone matrix for the reconstruction of posttraumatic diaphyseal tibial defects in two patients [ ].

Techniques: