4Web Medical
4WEB Medical is an innovative orthopedic implant company specializing in developing advanced structural implants utilizing proprietary Truss Implant Technology™. Their mission is to enhance spinal fusion outcomes through mechanobiologically active implants that stimulate osteogenesis, leveraging additive manufacturing and unique truss architecture to optimize load distribution, contact mechanics, and biological response.
Industries
Nr. of Employees
small (1-50)
4Web Medical
2801 Network Blvd. Suite 620 Frisco, TX 75034
Patents
Implants having bone growth promoting agents and methods of using such implants to repair bone structures
US-12279964-B2
View DetailsImplants having bone growth promoting agents contained within biodegradable materials
US-12201531-B2
View DetailsProgrammable intramedullary implants and methods of using programmable intramedullary implants to repair bone structures
US-12115071-B2
View DetailsPiezoelectric coated implants and methods of using piezoelectric coated implants to repair bone structures
US-12102535-B2
View Details
Implants having bone growth promoting agents and methods of using such implants to repair bone structures
US-12279964-B2
View DetailsImplants having bone growth promoting agents contained within biodegradable materials
US-12201531-B2
View DetailsProgrammable intramedullary implants and methods of using programmable intramedullary implants to repair bone structures
US-12115071-B2
View DetailsPiezoelectric coated implants and methods of using piezoelectric coated implants to repair bone structures
US-12102535-B2
View DetailsProducts
Truss interbody fusion implants (cervical, lumbar, anterior, lateral, posterior)
Titanium, additively manufactured open-architecture interbody fusion devices using truss geometry to distribute load, permit bone in-growth, and deliver mechanobiologic strain to adjacent tissue.
Stand-alone truss implants with integrated screw fixation (zero-profile)
Stand-alone interbody devices designed to allow fixation screws to pass through the implant into adjacent vertebral bodies, eliminating the need for a traditional external plate.
Lumbar and cervical plating solutions (modular plating with integrated/non-integrated options)
Plating solutions designed for lumbar and cervical applications with modular configurations and options for one-, two-, or four-screw fixation and integrated or non-integrated offerings.
Patient- and indication-specific truss implant designs (tumor, trauma, patient-specific)
R&D-stage truss implant designs intended for tumor, trauma, and patient-specific applications to address non-standard anatomies or disease states.
Truss interbody fusion implants (cervical, lumbar, anterior, lateral, posterior)
Titanium, additively manufactured open-architecture interbody fusion devices using truss geometry to distribute load, permit bone in-growth, and deliver mechanobiologic strain to adjacent tissue.
Stand-alone truss implants with integrated screw fixation (zero-profile)
Stand-alone interbody devices designed to allow fixation screws to pass through the implant into adjacent vertebral bodies, eliminating the need for a traditional external plate.
Lumbar and cervical plating solutions (modular plating with integrated/non-integrated options)
Plating solutions designed for lumbar and cervical applications with modular configurations and options for one-, two-, or four-screw fixation and integrated or non-integrated offerings.
Patient- and indication-specific truss implant designs (tumor, trauma, patient-specific)
R&D-stage truss implant designs intended for tumor, trauma, and patient-specific applications to address non-standard anatomies or disease states.
Services
Provision of surgical technique guides, training videos, and educational resources to support surgeon adoption and procedural competency.
Preclinical test programs including FEA, mechanical testing, micro-CT strain analysis, foam subsidence testing, and in vivo ovine studies to evaluate implant performance.
Provision of surgical technique guides, training videos, and educational resources to support surgeon adoption and procedural competency.
Preclinical test programs including FEA, mechanical testing, micro-CT strain analysis, foam subsidence testing, and in vivo ovine studies to evaluate implant performance.
Expertise Areas
- Spinal interbody implant design
- Additive manufacturing for medical implants
- Mechanobiology-driven device development
- Preclinical in vivo and in vitro evaluation
Key Technologies
- Additive manufacturing (electron beam melting / 3D printing)
- Finite element analysis (FEA)
- Micro-CT imaging and strain mapping
- hMSC cell culture and RT-PCR gene expression assays
News & Updates
An ovine fusion study showed that Truss Implant Technology™ provides design elements that can be optimized to accelerate the fusion process. These results led to the focus of this study, which evaluated the range of micro-strain found in the truss elements and overall structural efficiency, defined as relative strain distribution in the total number of struts.
An ovine fusion study showed that Truss Implant Technology™ provides design elements that can be optimized to accelerate the fusion process. These results led to the focus of this study, which evaluated the range of micro-strain found in the truss elements and overall structural efficiency, defined as relative strain distribution in the total number of struts.