The inCiTe™ 2.0 3D X-ray Microscope is an advanced micro-CT system that integrates phase contrast and spectral imaging to provide enhanced visualization of complex biological and orthopedic structures.
By acquiring dual-energy X-ray data with each exposure, inCiTe™ 2.0 allows comprehensive differentiation of soft tissue, bone, and biomaterials, supporting detailed evaluation of implant integration, bone microarchitecture, and disease-related skeletal changes. Its robust imaging performance offers researchers high-resolution, quantitative 3D insights essential for preclinical orthopedic research and multi-material biomedical applications.

Image Credit: Scintica Instrumentation Inc.
Features and benefits
- Modular design that may be reconfigured and upgraded for optimal flexibility
- Phase contrast imaging using propagation and the first-ever BrillianSe™ a-Se/CMOS hybrid detector
- Fits samples up to 200 mm in height and 300 mm in diameter with the Reveal™ spectral flat-panel detector
- X-ray source for thick or dense materials up to 130 kV
- For maximum system spatial resolution, X-ray spots can be as small as 2 μm (110 kV maximum).
System specifications
- Weight: 1380 kg
- Dimensions: 810 mm (W) × 1780 mm (L) × 1800 mm (H)
- Installation requirements: 100-240 VAC, 50-60 Hz
Detector specifications
Source: Scintica Instrumentation Inc.
|
BrillianSe™ Hybrid Detector |
Reveal™ Flat-Panel Detector |
| Pixel size at minimum magnification |
8 μm |
140 μm |
| Field of view (FOV) |
30 mm (⌀) x 30 mm (H) |
300 mm (⌀) x 200 mm (H) |
| FOV at maximum magnification |
3 mm (⌀) x 3 mm (H) |
10.7 mm (⌀) x 7.1 mm (H) |
| Pixel size at maximum magnification |
0.8 μm (10x) |
5 μm (28x) |
100 kV
- Tube voltage: 20-100 kV
- Spot Size: 5 µm @ 7.5 W
- Maximum current: 375 µA
- Maximum power: 15 W
110 kV
- Tube voltage: 40-110 kV
- Spot Size: 2 µm @ 2 W
- Maximum power: 16 W
- Maximum current: 200 µA
130 kV
- Spot Size: 8 µm @ 4W
- Maximum current: 300 µA
- Tube voltage: 40-130 kV
- Maximum power: 39 W
Applications
- Preclinical imaging
- Bone diseases
- Orthopedics
- Post-injury fracture healing
- Bone diseases
- Musculoskeletal disorders

Image Credit: Scintica Instrumentation Inc.

Image Credit: Scintica Instrumentation Inc.

Image Credit: Scintica Instrumentation Inc.

Image Credit: Scintica Instrumentation Inc.

Image Credit: Scintica Instrumentation Inc.