All famous scans
All famous scans
All famous scansAmerican actress - Instagram Profile
Alexandra Daddario is an American actress recognized for her versatile roles across film and television. She first gained widespread attention for her portrayal of Annabeth Chase in the Percy Jackson film series, establishing herself as a leading figure in youth-oriented fantasy cinema. Her career expanded significantly with her casting as Heather Miller in Texas Chainsaw 3D and, most notably, as Lisa Tragnetti in the first season of the HBO anthology series True Detective. Daddario has since solidified her status as a prominent Hollywood talent, balancing blockbuster franchises with independent projects and voice work, making her a familiar face to audiences of modern genre entertainment.
The scan reflects a lean, athletic build consistent with her active lifestyle and the physical demands of her roles. At 173 cm, her frame carries a balanced distribution of muscle and fat, resulting in a classic hourglass silhouette. This physique supports the agility and endurance required for action sequences and on-set movement, presenting a toned yet natural aesthetic that aligns with contemporary standards for leading actresses in action and drama genres. The measured composition underscores a functional strength rather than extreme conditioning, fitting for a performer who maintains fitness as part of a broader professional routine.
A visual estimation of the areas of your body with a higher likelihood of containing more fat than others -- not a measurement. This feature is experimental; treat the heatmap as an indication, not a clinical finding. Accuracy is best at the extremes of body-fat percentage, weaker in the middle, and atypical body shapes (athletic builds, pregnancy, etc.) may not be modelled well.
| Metric | Value vs reference | Reference | Reading |
|---|---|---|---|
| Lateral lean?Accurate to about ±2-3° in a single scan -- camera tilt is the main confounder. Trending against your own history (same setup) is more reliable than the absolute number. For best accuracy, make sure the camera was level while scanning. | -1.1° | 0° = vertical (frontal knees-to-head axis) | natural — upright |
| Head forward offset?Accurate to about ±1-2 cm in a single scan -- camera tilt and head rotation (looking up / down / sideways) are the main confounders. Trending against your own history (same setup) is more reliable than the absolute number. For best accuracy, look straight ahead and keep the camera level while scanning. | Upload a side picture to get this metric | 0 = ear in line with the spine axis (no forward head) | — |
| Forward/back lean?Accurate to about ±2-3° in a single scan -- camera tilt is the main confounder. Trending against your own history (same setup) is more reliable than the absolute number. For best accuracy, make sure the camera was level while scanning. | Upload a side picture to get this metric | 0° = vertical (side knees-to-head axis) | — |
| Shoulder tilt?Accurate to about ±2-3° in a single scan -- camera tilt is the main confounder. Trending against your own history (same setup) is more reliable than the absolute number. For best accuracy, make sure the camera was level while scanning. | -1.5° | 0° = level (frontal) | natural — balanced |
| Hip tilt?Accurate to about ±2-3° in a single scan -- camera tilt is the main confounder. Trending against your own history (same setup) is more reliable than the absolute number. For best accuracy, make sure the camera was level while scanning. | 0.0° | 0° = level (frontal) | natural — balanced |
| Segment | Left width | Right width | Δ vs symmetric | Reading |
|---|---|---|---|---|
| Upper arm Biceps / triceps | 7.7 cm | 6.9 cm | +10.2% | natural — left side larger |
| Forearm Forearm flexors | 5.9 cm | 6.2 cm | -5.5% | natural — right side larger |
| Thigh Quadriceps | 13.8 cm | 14.0 cm | -1.8% | natural — balanced |
BodyWHAT uses its own proprietary, neural-network-based technology to estimate your body-fat percentage and other body-composition metrics directly from your photos. These in-house models are combined with established anthropometric methods; the published methods and reference ranges below inform and calibrate those estimates.
BodyWHAT's figures are estimates for general fitness and education — not medical advice or a diagnosis. They draw on established methods and published reference ranges:
Always consult a qualified healthcare professional before making decisions about your health.
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