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Carlsmed

Carlsmed manufactures the aprevo digital-to-device 3-D printed implant system for lumbar spine surgery, utilizing patient data and digital technologies to create personalized surgical plans and devices. This approach addresses the variability in surgical outcomes by providing tailored solutions that enhance the precision and effectiveness of spine fusion procedures.

Founded 20181085K+ followers
Updated 20 months ago

Funding

$52.5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

Traditional spinal fusion surgery often yields variable outcomes due to the use of standardized implants that may not perfectly match individual patient anatomy and biomechanics. This can lead to suboptimal spinal alignment, increased risk of complications, and persistent pain for patients.

Solution

Carlsmed offers a personalized approach to spinal fusion with the aprevo system, which utilizes digital technologies and patient-specific data to design and manufacture 3D-printed implants. The aprevo system aims to optimize surgical plans and create implants that precisely fit each patient's unique spinal anatomy. By tailoring the implant to the individual, Carlsmed seeks to improve spinal alignment, reduce complications, and enhance the overall effectiveness of the fusion procedure. This digital-to-device workflow allows surgeons to pre-plan the surgery with greater precision and confidence.

Target Audience

The primary audience includes spine surgeons and healthcare professionals seeking to improve the precision and outcomes of lumbar spinal fusion procedures.

Features

  • Patient-specific surgical plans based on individual anatomy and biomechanics
  • 3D-printed aprevo implants designed for precise fit and optimal spinal alignment
  • Digital workflow integrating patient data, surgical planning software, and manufacturing
  • Enhanced precision in implant placement and spinal correction
This profile is AI-generated and may contain inaccuracies.