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ArchiMed PRO · CT and MRI post-processing

Parametric maps and 3D reconstructions right in the viewer

ArchiMed PRO modules for advanced visualization of CT, MRI and ultrasound. Brain perfusion, automated infarct calculation, series fusion, 3D segmentation of organs and vessels — without switching between applications.

ArchiMed PRO modules: medical device registration with Roszdravnadzor (Russia’s healthcare regulator) in progress
Module 01 · ArchiMed PRO Brain Perfusion

Brain perfusion with neural-network processing

Processing of CT and MR brain perfusion studies. The module calculates CBF, CBV, TTP, MTT and Tmax parametric maps — for diagnosing cerebral blood flow disorders, assessing the infarct core and ischemic penumbra, detecting chronic hypoperfusion and for neuro-oncology.

  • CBF · CBV · TTP · MTT · Tmax. A full set of parametric maps with quantitative assessment and export to DICOM SC / Parametric Map.
  • Motion artifact correction. Automatic temporal registration of the series — maps come out clean even with restless patients.
  • AIF and VOF detection. Automatic and manual selection of the arterial input function and venous output function, clustering and data pre-filtering.
  • Neural-network segmentation. ML models for delineating the infarct core, the hypoperfused area and the boundaries of the cerebral hemispheres.
  • Clinical scenarios. Stroke, chronic hypoperfusion, neuro-oncology, collateral flow assessment.
Parametric maps · 4 / 5
CT Perfusion · brain
Ivanov I. I. · 64 phases · AIF: right ICA
CBF mL/100g/min
CBV mL/100g
MTT s
Tmax > 6s s
low
high
Auto report · 47 s
PRO Chronos · stroke
Admitted: 2026-05-02 · 11:34 · time-to-result 00:47
Infarct core 28 mL
Ischemic penumbra 86 mL
Mismatch ratio 3.07
Tmax > 6 s 114 mL
Core 28 mL Penumbra 86 mL
Module 02 · ArchiMed PRO Chronos

Stroke triage in a minute

Fully automated calculation of infarct core and ischemic penumbra volumes from CT perfusion. When the radiologist opens the study, the report is already there: volumes, mismatch ratio, a thrombectomy recommendation. The patient triage decision takes minutes, not hours.

  • Automated perfusion processing. CBF, CBV, TTP, MTT, Tmax — all parametric maps are calculated without operator involvement.
  • Core / penumbra segmentation. A neural network delineates the infarct core and the penumbra and calculates their volumes and ratio.
  • Automated report. A ready-made structured report with figures, map screenshots and a mismatch summary.
  • Less subjectivity. Reproducible results regardless of operator experience or time of day.
  • Time to result < 60 s. From the series arriving in PACS to a finished report in RIS — under a minute on a typical workstation.
Advanced visualization

Post-processing modules in a single viewer

Organ and vessel segmentation, virtual endoscopy, series fusion — for oncologists, pulmonologists, cardiologists, surgeons and neuroradiologists. All modules work on the same series stored in PACS, with no separate workstations.

ONCOLOGY · RECIST
Oncology
One-click measurement of target lesions and tracking of changes across studies.
  • Sum of target diameters plotted as a chart
  • Automatic key image capture after validation
  • Linking of identical positions across series
  • RECIST 1.1 report template
LUNG · NODULES
Lungs and nodules
Lung nodule segmentation, volume calculation, doubling time, density histogram.
  • Automatic lesion characterization
  • Comparison with prior studies
  • Doubling time and Lung-RADS
  • Low-dose screening support
LUNG · COVID
Lung tissue · COVID
Automatic lung parenchyma segmentation, lobectomy simulation, pre-/postoperative volume.
  • Separate segmentation of the left and right lung
  • Airways and vessels separately
  • Volumetric density histograms
  • Resection simulation with volume calculation
CT · ANGIO · CPR
Vessels · CT angiography
One-click segmentation of arteries and veins, centerline, CPR views.
  • Carotid artery, aorta, coronary arteries, lower limbs
  • Automatic centerline
  • CPR along the selected vessel
  • Cross-section with manual editing
LIVER · SURGERY
Liver · planning
Automatic segmentation of the liver, portal/hepatic veins, artery and tumors.
  • Liver tissue segmentation in “0 clicks”
  • Vessels and bile ducts separately
  • 2D resection tools with a safety margin
  • Calculation of remnant and resected volume
VIRTUAL · COLONOSCOPY
Virtual colonoscopy
Automatic colon segmentation and a virtual fly-through of the lumen.
  • Automatic endoscope path calculation
  • Viewing from different angles
  • Reverse navigation and finding markers
  • Side-by-side 2D/3D viewing
BODY · COMPOSITION
Body fat analysis
One-click segmentation of visceral and subcutaneous adipose tissue.
  • Automatic calculation of the fat ratio
  • Waist circumference and visceral fat index
  • Trends across studies
  • Use in cardiology and endocrinology
FUSION · CT · MR · PT
CT ↔ MRI ↔ PET fusion
Fusion of series from different modalities with automatic registration and SUV recalculation.
  • Rigid and elastic registration
  • ROI transfer between series
  • SUV recalculation for PET
  • Comparison of changes during oncology follow-up
3D · MPR · MIP
Viewer 3D tools
A basic post-processing set in the viewer — no separate licenses or applications.
  • MPR · MIP · MinIP · curved reformat
  • 3D Volume Rendering and virtual endoscopy
  • Presets by tissue and modality
  • Export of key views to DICOM SC
Catalog · 40+ modules

All ArchiMed PRO modules

Quantitative analysis, intervention planning and structured reports in DICOM SR and PDF — by specialty.

Modules: medical device registration with Roszdravnadzor in progress
Neuroradiology

Brain

  • Stroke perfusion: infarct core, critical hypoperfusion, penumbra, mismatch
  • ASPECTS: early infarct signs across ten regions
  • Brain MR and CT analysis: motion correction, brain mask, permeability, diffusion tensor
  • Tractography of white matter tracts
  • Advanced diffusion: IVIM, kurtosis
  • Subtraction CT angiography of the head and neck
Cardiology

Heart and coronary arteries

  • Calcium scoring: Agatston, volume and mass scores, CAC-DRS
  • Coronary CT angiography: stenoses, plaque composition, segment model
  • Cardiac function on MRI: volumes, ejection fraction, myocardial mass, 17-segment map
  • Myocardial strain, myocardial perfusion, late enhancement, left atrial fibrosis
  • 4D flow MRI: flow volume, regurgitation, streamlines
  • 3D reconstruction along cardiac axes, TAVI planning, a shared cardiac workspace
Vessels · angiography

Vascular tree

  • Vessel analysis: centerline, NASCET and ECST stenosis, aneurysm
  • Tubular and bifurcated stent graft planning
  • Quantitative angiography: minimal and reference diameter, balloon and stent sizing
  • X-ray angiogram subtraction, left ventriculography
Thoracic radiology

Lungs and airways

  • Lung lobes, LAA-950 emphysema index, tissue analysis, lobectomy simulation
  • Lung nodules: volume, doubling time, changes across studies
  • Airways: lumen profile, stenosis, stent sizing
  • Pulmonary embolism: filling defect localization, obstruction index, right heart strain
  • Preoperative vascular and bronchial overview
Abdomen · oncology

Liver, bowel, lesions

  • Liver CT: Couinaud segments, lesions, vessels, resection simulation
  • Liver MRI: fat fraction, T2* and R2*, diffusion, contrast enhancement dynamics
  • RECIST 1.1: lesion registry, nadir, response category
  • Percutaneous ablation planning, virtual CT colonoscopy, rectal MRI
  • Abdominal fat: visceral and subcutaneous, waist circumference
Women’s and men’s health

Breast, pelvis, prostate

  • Breast MRI: parametric maps, kinetic curves, BI-RADS report
  • Female pelvic MRI: diffusion, enhancement curves, O-RADS MRI report
  • Prostate MRI: zones, volume, PSA density, PI-RADS 2.1 and Node-RADS calculators
  • 3D models for printing and VR in STL and OBJ formats
Musculoskeletal · maxillofacial

Spine, joints, jaw

  • Spine: C1–L5 segmentation, Cobb angles, lordosis, kyphosis, spondylolisthesis
  • Cartilage mapping: T2 and T2*, thickness and volume by subregion
  • Maxillofacial imaging: panoramic view, mandibular canal, virtual implant placement
Nuclear medicine · ultrasound · ECG

PET-CT, ultrasound, ECG

  • PET-CT and SPECT-CT: SUV by body weight, lean body mass and body surface area, MTV, TLG
  • Quantitative ultrasound: Doppler, intima-media complex, volume
  • Contrast-enhanced ultrasound and elastography
  • ECG: standard layouts, PR, QRS and QT intervals, corrected QT
Printing · reports

Results in the archive and on film

  • Reports in DICOM SR and PDF, masks in DICOM SEG, parametric maps
  • Saving and restoring the working session
  • Film print preparation: layouts up to 3×3, orientation, DPI, DICOM data on the layout

For every clinical specialty

The same set of modules covers the routine work of radiologists, neuroradiologists and subspecialists — from the stroke center to the thoracic surgery department.

Neuroradiology Stroke center Oncology Pulmonology Cardiology Liver surgery Vascular surgery Critical care

Supported modalities

Post-processing works with standard DICOM series — no exports to proprietary formats. Any PACS node can be the series source.

CT CT Perfusion MR MR Perfusion PT (PET) CTA MRA DWI · ADC SR
< 60 s
from series to report
PRO Chronos
5
parametric maps
CBF · CBV · TTP · MTT · Tmax
40+
modules in the
ArchiMed PRO catalog
100%
on-premise
no cloud, no personal data leaving the site

We’ll connect ArchiMed PRO
to your PACS

We’ll show how PRO Brain Perfusion and Chronos work on your studies, help integrate the modules with PACS and RIS, onboard your radiologists and set up patient triage for your stroke center.