Lazarus 3D provides patient-specific 3D-printed surgical models made from soft synthetic polymers that replicate human tissue, allowing surgeons to rehearse procedures with precision. This technology enhances surgical planning and reduces patient risk by enabling practitioners to practice complex techniques on realistic anatomical replicas before actual operations.
Funding
$10.3M 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.
Founders
Product
Problem
Surgeons often rely on traditional imaging techniques that may not fully represent the complexities of a patient's anatomy, leading to potential challenges and unforeseen complications during surgery. The lack of realistic, hands-on practice models can limit a surgeon's ability to prepare for unique patient cases and refine their surgical approach.
Solution
Lazarus 3D offers patient-specific, 3D-printed surgical models that replicate the feel and properties of human tissue, enabling surgeons to rehearse complex procedures with precision. These models, created from patient CT or MRI scans, provide a realistic anatomical replica for practicing incisions, sutures, and other surgical techniques. The company delivers a virtual "Digital Twin" within 24-48 hours of receiving the scan, followed by a physical model within one week. By rehearsing on these models, surgeons can improve patient outcomes, plan for unique challenges, and reduce risks associated with actual surgery.
Target Audience
The primary customers are surgeons and hospitals seeking to improve surgical planning, enhance patient safety, and optimize surgical outcomes through realistic preoperative rehearsal.
Features
- 3D-printed models made from soft synthetic polymers that mimic human tissue
- Patient-specific replicas created from CT or MRI scans
- Digital Twin virtual model delivered within 24-48 hours
- Physical model delivered within one week
- Models allow for practicing incisions, sutures, and cauterization
- Enables rehearsal of surgical procedures anytime, anywhere