Clinical 3D Micro-Imaging

LifeViz® Micro

The Power of Precision in an Ultra-Compact 3D System

Engineered specifically for dermatologists, aesthetic practitioners, and clinical researchers, the LifeViz® Micro delivers quantitative sub-millimeter 3D imaging to capture subtle skin surface changes. Its compact handheld form factor combined with patented dual-beam targeting ensures perfectly reproducible positioning for accurate longitudinal follow-ups over days, weeks, or months.

Ultra-Compact Handheld
Microsurface Accuracy
Consistent Overtime Tracking
AI-Driven Workflow
Awarded Best Aesthetic Device AMWC

Awarded Best Aesthetic Device

Recognized globally at AMWC for outstanding innovation in non-invasive clinical evaluation and 3D skin measurement accuracy.

LifeViz Micro 3D Camera System

Engineered for Detailed Skin Quantification

Analyze skin microstructure, micro-relief, volume shifts, and surface roughness through standardized 3D visual metrics.

3D Micro-Surface Display

Obtain standardized 3D images to visualize fine skin texture, pores, and micro-grooves. Compare baseline views against follow-up visits with automated image overlapping and precise point matching.

Volumetric & Topographic Assessment

Accurately quantify subtle structural changes using colorimetric depth mapping. Measure micro-volume enhancements or tissue reduction with objective numerical precision.

Quantitative Micro-Measurements

Perform precise measurements across straight and curved skin paths. Key quantitative parameters include:

  • Micro-Volume & Depth Mapping
  • Surface Roughness (Ra, Rq) & Perimeter
  • Geodesic & Straight Line Distance
  • Wrinkle Height & Pore Density Evaluation

Longitudinal Overtime Tracking

Track treatment progress over extended intervals. Ideal for clinical trials, laser rejuvenation follow-ups, chemical peels, and topical treatment verification.

LifeViz Micro 3D Display Visualization

Trusted by International Key Opinion Leaders

Peer-Reviewed & Clinical Case Studies

Midface Volume Correction 3D Study
Dermatology Case Study

Midface Volume Correction & HA Filler Assessment

Objective 3D evaluation demonstrating quantified hyaluronic acid volume distribution and micro-surface contouring.

Skin Cancer 3D Assessment
Clinical Research

Quantitative 3D Micro-Analysis of Skin Lesions

Evaluating lesion margin elevation, surface roughness, and micro-relief changes in dermatological assessments.

Longitudinal Skin Rejuvenation
Aesthetic Evaluation

Longitudinal Micro-Surface Rejuvenation Tracking

Measuring skin texture refinement and collagen induction treatment effectiveness over standardized timepoints.