NewTom GiANO HR 2D/3D Ceph

GiANO HR provides a wide range of 2D and 3D examinations that are ideal for diagnoses concerning either complete or partial dentition, single dental arches and all maxillofacial regions. 3D volumes with FOV from 4 x 4 cm and 16 x 18 cm and resolution up to 68 μm, which is among the highest resolution available on the market, allow to assess maxillary sinuses, frontal sinuses, temporomandibular joints, airways and the internal ear. Low-dose protocols, SafeBeamTM technology and servo-assisted alignment always ensure low radiation doses for patient protection. GiANO HR is an extremely versatile device that offers detailed images and dedicated protocols for adults and children, studied to reduce patient exposure based on the actual needs of the investigation.

Do you need pricing or guidance on the best-value solution?

Chat with a Lomaen Medical Sales and Account Manager on 011 608 3150 or email them at sales@lomaen.co.za

NewTom GiANO HR 2D Features

Relocatable 2D Sensor
Very high sensitivity 2D PAN/CEPH sensor. 

Touch Screen Control Panel
User-friendly features with excellent workflow efficiency. The user-friendly interface of the wide 10” on-board touch screen control panel enhances functional efficiency.

Complete Cephalometric Imaging
A cutting-edge acquisition system to obtain clear and homogeneous cephalometric images. The use of ear guards specially designed for paediatric applications. 

Multiple Panoramic Imaging
The MultiPAN mode generates a set of 5 radiographic images from a single scan; hence, the best panoramic view can be chosen for the diagnostic needs of the examination.

aMAR Filters
The innovative aMAR (autoadaptive Metal Artifact Reduction) function is a proprietary algorithm developed by NewTom. It considerably reduces the artifacts generated by amalgam, implants or other metal elements that can impair image quality. This facilitates planning and design of specialist treatments that require segmentation of anatomical structures without renouncing the original data acquired.

NNT Integrated Software
NNT is NewTom’s software that provides several dedicated application modes specifically intended for implantology, endodontics, periodontics, maxillofacial surgery and radiology. It is  powerful technologically cutting edge device designed to acquire and process images in a few simple steps to obtain the information required for specific detailed patient diagnosis.

NewTom GiANO HR 3D Features

3D Sensor
High sensitivity and resolution of up to 68 micron.

3 Configurations to Meet Every Clinical and Diagnostic Need
Available in 3D Prime, 3D Advanced and 3D Professional.

Touch Screen Control Panel
User-friendly features with excellent workflow efficiency. The user-friendly interface of the wide 10” on-board touch screen control panel enhances functional efficiency.

3D Reconstruction Algorithm
Patented algorithm for 3D reconstruction.

Scout View Images
The two Scout View images, combined with servo-assisted alignment technology, offer the operator a guided procedure to obtain correct positioning of the patient, while guaranteeing results in every situation. 

360° Scanning Technology
360° scans and optimised algorithms always ensure optimal outcome. This image acquisition technique yields high quality images and considerably reduces artifacts, with short scan times.

aMAR Filters
The innovative aMAR (autoadaptive Metal Artifact Reduction) function is a proprietary algorithm developed by NewTom. It considerably reduces the artifacts generated by amalgam, implants or other metal elements that can impair image quality. This facilitates planning and design of specialist treatments that require segmentation of anatomical structures without renouncing the original data acquired.

NNT Integrated Software
NNT is NewTom’s software that provides several dedicated application modes specifically intended for implantology, endodontics, periodontics, maxillofacial surgery and radiology. It is  powerful technologically cutting edge device designed to acquire and process images in a few simple steps to obtain the information required for specific detailed patient diagnosis.