Hand-held ultrasound system
for skin ultrasound imagingcolor dopplerAI-powered

Hand-held ultrasound system - Beijing ADSS Development - for skin ultrasound imaging / color doppler / AI-powered
Hand-held ultrasound system - Beijing ADSS Development - for skin ultrasound imaging / color doppler / AI-powered
Hand-held ultrasound system - Beijing ADSS Development - for skin ultrasound imaging / color doppler / AI-powered - image - 2
Hand-held ultrasound system - Beijing ADSS Development - for skin ultrasound imaging / color doppler / AI-powered - image - 3
Hand-held ultrasound system - Beijing ADSS Development - for skin ultrasound imaging / color doppler / AI-powered - image - 4
Hand-held ultrasound system - Beijing ADSS Development - for skin ultrasound imaging / color doppler / AI-powered - image - 5
Hand-held ultrasound system - Beijing ADSS Development - for skin ultrasound imaging / color doppler / AI-powered - image - 6
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Characteristics

Ergonomics
hand-held
Application
for skin ultrasound imaging
Imaging modes
color doppler
Options
AI-powered, AI-based, wireless probe
Probe frequency

13.2 MHz

Description

Product overview
AI Handheld Ultrasound is a compact, professional handheld imaging system for dermatology and aesthetic procedures. It delivers high-frequency tomographic ultrasound imaging and AI-assisted interpretation to visualize full skin layers, map filler distribution and support evidence-based treatment planning and follow-up.

How it works
  • Step 1 — High-frequency ultrasound imaging: The handheld probe emits 13.2 MHz waves to image epidermis, dermis, subcutaneous tissue and the SMAS layer, producing high-resolution acoustic images of facial anatomy.
  • Step 2 — AI real-time recognition & segmentation: The embedded AI engine segments tissue layers, detects and classifies common filler materials, screens abnormalities and provides quantitative measurements in real time.
  • Step 3 — Structured data output: Raw images are converted into structured clinical data (layer metrics, filler mapping, imaging parameters) to support objective assessment and longitudinal comparison.
  • Step 4 — Multi-modal integration: In online mode scan data synchronizes with a 3D skin analysis platform for cross-platform visualization, comparison and report generation.


Key advantages
  • Full-layer visualization from epidermis to SMAS for comprehensive assessment of skin and deep tissues.
  • AI-assisted interpretation based on a large clinical database to improve consistency and reduce manual variability.
  • Filler recognition and injection-safety support: mapping filler location, evaluating complications and verifying injection depth.
  • Real-time dual view to support dynamic procedures and injection guidance.
  • Radiation-free, non-invasive imaging suitable for repeated follow-up.
  • Intuitive interface and automated reporting for streamlined clinical workflow.


Technical highlights
  • Three scanning modes: Skin Scan (full-layer analysis), Filler Scan (filler history and material recognition), Dual View (real-time dual display).
  • High-frequency probe: 13.2 MHz imaging optimized for facial skin and SMAS visualization.
  • 21 standardized facial mapping points to enable consistent full-face structured capture.
  • Recognizable filler types: Hyaluronic Acid (HA), Collagen, PLLA, PCL, CaHA, PMMA, PVA.
  • AI database: >30,000 clinical cases; reported algorithm accuracy >96%.
  • Imaging controls: GN (Gain), BDR (Dynamic Range), D (Depth), FOC (Focus), ENH (Enhancement), HAM (Harmonic Imaging), CPD (Color Power Doppler).
  • Custom acoustic coupling pad for consistent transmission and improved image stability (one-pad-per-client recommended).
  • Wireless workflow: real-time video streaming and remote scan control; online synchronization with 3D skin analysis platform and offline standalone operation.
  • Local storage: 256 GB tablet memory (~2,000 patient scan records) for offline use and later upload.
  • Dynamic video capture for clinical imaging and real-time observation.


Functions
  • Automated generation of structured clinical reports.
  • Real-time monitoring to support precise aesthetic procedures and injection guidance.
  • Rapid full-face skin assessment for efficient clinical evaluation.
  • Long-term patient tracking for before/after comparison and outcome monitoring.


Treatment areas
  • Forehead
  • Brow area
  • Tear trough / under-eye area
  • Cheeks
  • Apple muscle zone
  • Nasal bridge
  • Nasolabial folds
  • Perioral area
  • Jawline
  • Chin


Application scenarios
  • Dermatological diagnosis support
  • Full-layer skin structure analysis in clinics
  • Filler history evaluation and metabolism tracking
  • Injection planning, guidance and post-injection evaluation
  • Facial concern analysis and treatment planning
  • Post-treatment monitoring and longitudinal comparison


Technical specifications
  • Commercial name / model: AI Handheld Ultrasound
  • Brand: ADSS
  • Imaging frequency: 13.2 MHz
  • Scanning modes: Skin Scan, Filler Scan, Dual View
  • Facial mapping points: 21 standardized points
  • Recognizable filler types: HA, Collagen, PLLA, PCL, CaHA, PMMA, PVA (7 types)
  • AI database: >30,000 clinical cases
  • Reported algorithm accuracy: >96%
  • Imaging parameter adjustments: GN, BDR, Depth (D), Focus (FOC), Enhancement (ENH), Harmonic Imaging (HAM), Color Power Doppler (CPD)
  • Storage (local/offline): 256 GB (~2,000 patient scan records)
  • Custom acoustic coupling pad: one-pad-per-client design
  • Wireless scanning and video streaming supported; online synchronization with 3D skin analysis platform available
  • Dynamic video capture / fast capture time for real-time observation

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.