Digihuman 3D Printing Model-Hand Muscles

Digihuman 3D Printing Model-Hand Muscles

Creation of a multi-structured 3D digital anatomical model based on high-precision digitized data of the human body. A full-color, multi-material 3D printer and printing with eco-friendly resin provide a 1:1 high simulation of physical anatomical models.

Material: soft and hard material

Data source: digital model of the human body

The 3D-printed model of the hand muscles includes the distal part of the forearm, bones, muscles, tendons, skin, and other structures of the hand. This is a full-color printed model that combines soft and hard materials. The bones in this model are made of hard material, while the muscles, tendons, and skin have a certain flexibility, creating tactile sensations similar to real bones and soft tissues.

The morphological features, structure, course, and spatial arrangement of bones, muscles, tendons, and other structures in the model of the hand muscles correspond to real anatomical specimens. The textures of the muscle fibers and tendons of the forearm and hand also match the actual samples of the hand. The model of the hand muscles retains a portion of the skin and superficial fascia, allowing for a complete representation of the spatial relationships between the bones and muscles of this area.

3D printing

The selected full-color multi-material 3D printer uses 3D jet printing technology and light curing with 12 material channels for multi-material combined printing. The chosen 3D printer can perform 3D printing in various modes, such as single hard material, combination of soft and hard material, as well as transparent wrapping material.

Full-color printing: multi-channel digital full-color 3D printing technology provides unique color customization capabilities for creating vibrant and detailed models.

Multi-material printing (with eco-friendly materials): from rubber-like to hard materials, from transparent to opaque, from colorless to colored, from standard materials to biocompatible materials. Various composite 3D printing solutions for printing complex surgical medical models for teaching anatomy, neurosurgery, cardiovascular surgery, oncology, etc.

High-efficiency printing: up to 3840 piezoelectric nozzles and special algorithms ensure a printing speed of up to 4 liters per hour using high-frequency jet curing, complemented by efficient post-processing equipment for faster and more accurate printing without secondary curing.
Get a consultation
Fill out the form and we will call you
Check the correctness of the phone number