CurveBeam AI
CurveBeam AI specializes in cone beam CT imaging and AI-informed bone and joint analysis for orthopedics and bone health. They develop advanced imaging systems and AI tools to improve diagnosis, surgical planning, and clinical outcomes in musculoskeletal care. The company also offers cloud-based data management and analysis platforms, and is involved in ongoing research, scientific literature, and regulatory approvals to advance weight bearing CT technology. The company actively participates in scientific research, webinars, conferences, and has received FDA clearance, CE marking, and international certifications for its innovative imaging systems.
Industries
Nr. of Employees
medium (51-250)
CurveBeam AI
2800 Bronze Dr. Suite 110, Hatfield, PA, USA 19440
Patents
Method and system for machine learning classification based on structure or material segmentation in an image
US-12217418-B2
View DetailsMethod and system for material decomposition in dual-or multiple-energy x-ray based imaging
US-12029600-B2
View DetailsMethod and system for material decomposition in dual- or multiple-energy x-ray based imaging
US-11786201-B1
View Details
Method and system for machine learning classification based on structure or material segmentation in an image
US-12217418-B2
View DetailsMethod and system for material decomposition in dual-or multiple-energy x-ray based imaging
US-12029600-B2
View DetailsMethod and system for material decomposition in dual- or multiple-energy x-ray based imaging
US-11786201-B1
View DetailsProducts
Standing weight-bearing extremity CBCT system
Point-of-care cone-beam CT system engineered to acquire standing, weight-bearing 3D images of lower extremities (and configurable for full-leg or hip imaging) to support functional biomechanical assessment and clinical diagnosis.
Compact extremity CBCT system for upper-extremity imaging
Cone-beam CT system optimized for hand, wrist and elbow imaging with smaller bore and positioning presets to support high-resolution multiplanar reconstructions for upper-extremity workflows.
Automated segmentation and measurement software (cloud-enabled) with investigational modules
Software platform that segments bone anatomy from CT datasets, performs standardized 3D measurements, generates clinical reports and exports 3D models; includes investigational modules for axial alignment and advanced metrics available for research evaluation.
Next-generation weight-bearing CT hardware platform
Ongoing development of a next-generation weight-bearing CT platform intended to improve imaging performance, workflow, and clinical capabilities for orthopedic specialties.
Standing weight-bearing extremity CBCT system
Point-of-care cone-beam CT system engineered to acquire standing, weight-bearing 3D images of lower extremities (and configurable for full-leg or hip imaging) to support functional biomechanical assessment and clinical diagnosis.
Compact extremity CBCT system for upper-extremity imaging
Cone-beam CT system optimized for hand, wrist and elbow imaging with smaller bore and positioning presets to support high-resolution multiplanar reconstructions for upper-extremity workflows.
Automated segmentation and measurement software (cloud-enabled) with investigational modules
Software platform that segments bone anatomy from CT datasets, performs standardized 3D measurements, generates clinical reports and exports 3D models; includes investigational modules for axial alignment and advanced metrics available for research evaluation.
Next-generation weight-bearing CT hardware platform
Ongoing development of a next-generation weight-bearing CT platform intended to improve imaging performance, workflow, and clinical capabilities for orthopedic specialties.
Services
HIPAA-compliant cloud service for secure DICOM storage, long-term archiving, dataset anonymization, web-based viewing, and cloud-hosted image processing accessible via zero-footprint browser clients.
Web-based platform that applies deep learning to segment bone anatomy, compute standardized 3D measurements, generate clinical reports and export 3D model files for surgical planning and additive manufacturing; investigational features available for research.
Workstation software for reformatting volumetric datasets, producing high-resolution orthogonal and oblique reformats, performing semi-automated measurements, and integrating with PACS/DICOM workflows for clinical review.
Customer-facing services including site installation, mobile-suite deployment, technical support, clinical applications support, onboarding, training, and educational webinars for system operators and clinicians.
Support for clinical study set-up, collaboration with academic investigators, IRB-approved site facilitation, and sharing of anonymized datasets for research and evidence generation.
Delivery of webinars, case studies, and continuing-education content to disseminate clinical use-cases, workflow recommendations, and outcome evidence for weight-bearing CT imaging.
HIPAA-compliant cloud service for secure DICOM storage, long-term archiving, dataset anonymization, web-based viewing, and cloud-hosted image processing accessible via zero-footprint browser clients.
Web-based platform that applies deep learning to segment bone anatomy, compute standardized 3D measurements, generate clinical reports and export 3D model files for surgical planning and additive manufacturing; investigational features available for research.
Workstation software for reformatting volumetric datasets, producing high-resolution orthogonal and oblique reformats, performing semi-automated measurements, and integrating with PACS/DICOM workflows for clinical review.
Customer-facing services including site installation, mobile-suite deployment, technical support, clinical applications support, onboarding, training, and educational webinars for system operators and clinicians.
Support for clinical study set-up, collaboration with academic investigators, IRB-approved site facilitation, and sharing of anonymized datasets for research and evidence generation.
Delivery of webinars, case studies, and continuing-education content to disseminate clinical use-cases, workflow recommendations, and outcome evidence for weight-bearing CT imaging.
Expertise Areas
- Weight-bearing cone-beam CT imaging
- Low-dose CT protocol development and dose-safety evidence
- Automated 3D segmentation and standardized measurement workflows
- Orthopedic deformity and alignment analysis (hindfoot, syndesmosis, axial alignment)
Key Technologies
- Cone-beam computed tomography (CBCT)
- Weight-bearing/standing CT acquisition
- Low-dose CT acquisition techniques
- Deep learning–based bone segmentation
News & Updates
CurveBeam AI announced FDA clearance for an enhanced X-Ray source for the HiRise weight bearing system, improving image quality for larger patients.
A scientific literature highlight discussing the advantages of weight bearing CT in ankle injury assessment.
A study published in March 2024 demonstrating the reliability of AI-powered foot and ankle measurements.
CurveBeam AI announced FDA clearance for an enhanced X-Ray source for the HiRise weight bearing system, improving image quality for larger patients.
A scientific literature highlight discussing the advantages of weight bearing CT in ankle injury assessment.
A study published in March 2024 demonstrating the reliability of AI-powered foot and ankle measurements.