Sugar Dent 3D is a cutting-edge software designed for capturing, rendering, and analyzing 3D dental scans. Utilizing advanced 3D scanner technology, it captures detailed images of human teeth. The software then renders these scans into high-quality 3D models and provides Multi-Planar Reconstruction (MPR) views for in-depth analysis. Sugar Dent 3D empowers dental professionals with precise diagnostic capabilities, leading to enhanced treatment planning and improved patient care.
Captures detailed 3D images of human teeth using advanced 3D scanner technology.
Creates lifelike 3D models from scanned data, providing a comprehensive view of dental anatomy.
Offers MPR views, allowing for detailed analysis of dental structures from various angles.
Includes tools for accurate measurements of dental dimensions, aiding in diagnosis and treatment planning.
Designed with an intuitive interface for ease of use, enhancing workflow efficiency.
Allows for customization of image visualization, including zoom, pan, rotation, and color adjustments.
Utilizes AI algorithms to enhance diagnostic accuracy and automate complex analyses.
Enables virtual treatment planning and simulation, helping to visualize potential outcomes.
Captures intricate details of dental anatomy using advanced 3D scanning technology, providing a comprehensive view of teeth and surrounding structures.
Generates lifelike 3D models from scanned data, allowing for a realistic visualization of dental conditions and facilitating better understanding and communication.
Provides MPR views, enabling detailed examination of dental structures from various angles (axial, sagittal, coronal), enhancing diagnostic accuracy.
Offers tools for accurate measurements of tooth dimensions, bone density, and other critical parameters, supporting precise treatment planning.
Allows for customization of image visualization, including zoom, pan, rotation, and color adjustments, to meet individual diagnostic needs.
Equipped with a suite of tools for in-depth analysis of dental structures, pathologies, and treatment planning, enhancing the overall diagnostic process.
Precisely plan implant placement using detailed 3D models and MPR views. Determine the optimal implant size, angulation, and position, taking into account bone density, proximity to vital structures, and prosthetic requirements.
Analyze tooth movement and alignment in 3D, enabling accurate diagnosis of malocclusions and virtual setup of orthodontic treatment plans. Predict tooth movement and assess potential challenges before starting treatment.
Design and fabricate custom prosthetics, such as crowns, bridges, and dentures, with greater precision using 3D models. Ensure optimal fit, function, and aesthetics by visualizing the final restoration in the context of the patient's anatomy.