Scenario

Lean Body Mass by Height & Weight

Estimate your lean body mass using only height and weight — no body fat data needed. Understand how much of your weight is muscle, bone, and organ tissue.

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Your Details

cm
kg

Your Lean Body Mass

Boer (1984)

Most widely used

56kg

James (1976)

Clinical reference

56.5kg

Hume (1966)

Research standard

52.8kg
Average LBM
55.1kg
Average of all three formulas — 79% of total body weight

LBM as % of Body Weight

Formula Comparison

LBM Reference Range: For most adults, LBM ranges from 60–85% of total body weight. Men typically have higher LBM (75–85%) than women (65–75%) due to higher muscle mass and bone density. Your LBM of 79% is in a healthy range. Keep maintaining your current fitness routine.

The formula

The formula

What Lean Body Mass Measures

Lean body mass (LBM) is the total weight of everything in your body that is not fat — skeletal muscle, bones, organs, connective tissue, and water. It is often used interchangeably with fat-free mass (FFM), though technically fat-free mass excludes the small amount of essential lipids found in cell membranes. LBM is a key metric in clinical nutrition, sports medicine, and metabolic research because it directly correlates with basal metabolic rate, strength, and functional capacity.

Unlike total body weight, LBM allows you to see how much of your mass is metabolically active tissue. This distinction matters: two people at the same weight can have very different LBM values, and the person with higher lean mass typically burns more calories at rest, handles glucose more efficiently, and maintains better bone density. The three formulas below — Boer, James, and Hume — estimate LBM from simple inputs (weight, height, sex) without requiring specialized equipment.

The LBM Formulas

Each formula uses slightly different coefficients derived from separate study populations in the mid-to-late 20th century. All three take weight in kilograms (W) and height in centimeters (H) as inputs.

Boer (1984)

Male: 0.407 × W + 0.267 × H − 19.2
Female: 0.252 × W + 0.473 × H − 48.3

James (1976)

Male: 1.1 × W − 128 × (W / H)²
Female: 1.07 × W − 148 × (W / H)²

Hume (1966)

Male: 0.32810 × W + 0.33929 × H − 29.5336
Female: 0.29569 × W + 0.41813 × H − 43.2933

Formula Source

The LBM formulas implemented in this calculator are derived from the following peer-reviewed publications: Boer (1984), James (1976), and Hume (1966). The World Health Organization references lean body mass estimation in its body composition assessment guidelines.

Reference URL: https://www.who.int/publications/i/item/9789241501491

Last Verified: 2026-07-30

Worked Example

Consider a male weighing 70 kg with a height of 175 cm. Applying each formula:

  • Boer (1984): 0.407 × 70 + 0.267 × 175 − 19.2 = 28.49 + 46.725 − 19.2 = 56.0 kg
  • James (1976): 1.1 × 70 − 128 × (70 / 175)² = 77 − 128 × 0.16 = 77 − 20.48 = 56.5 kg
  • Hume (1966): 0.32810 × 70 + 0.33929 × 175 − 29.5336 = 22.967 + 59.376 − 29.5336 = 52.8 kg

The results range from 52.8 kg to 56.5 kg, showing that formula choice can affect the estimate by about 3–4 kg. For this individual, the average across all three formulas is approximately 55.1 kg of lean mass, implying a body fat mass of roughly 70 − 55.1 = 14.9 kg and an estimated body fat percentage of about 21%.

LBM Formula Comparison Table

FormulaYearMale CoefficientFemale Coefficient
Boer19840.407W + 0.267H − 19.20.252W + 0.473H − 48.3
James19761.1W − 128(W/H)²1.07W − 148(W/H)²
Hume19660.32810W + 0.33929H − 29.53360.29569W + 0.41813H − 43.2933

Why LBM Formulas Alone Are Not Perfect

All three formulas were developed using mid-20th century reference populations, which may not reflect the ethnic and body-composition diversity of today. The Boer formula was derived from a Dutch military cohort, James from a British hospital study, and Hume from a predominantly white North American sample. None of the formulas account for ethnicity, age-related muscle loss, or variations in bone density.

The formulas also assume a fixed relationship between height, weight, and lean mass that does not hold for everyone. A resistance-trained athlete with high bone density and large muscle mass may have their LBM underestimated by these equations, while a sedentary older adult with sarcopenia may have it overestimated. For the most accurate individual assessment, DEXA (dual-energy X-ray absorptiometry) or bioelectrical impedance analysis (BIA) with validated equations is recommended.

Known Limitations

  • All three formulas were derived from adult populations and may not be valid for children, adolescents, or individuals under 18 years of age.
  • Not suitable for pregnancy: maternal weight gain includes fetal tissue, amniotic fluid, and increased blood volume, all of which distort LBM estimates.
  • Accuracy varies significantly in very muscular individuals, older adults with sarcopenia, and people with amputations or atypical body proportions.
  • The formulas do not distinguish between skeletal muscle, organ mass, bone mineral content, and body water — all of which are lumped into a single "lean mass" value.
  • Hydration status can affect the James formula more than the others because it uses a weight-to-height ratio squared, which is sensitive to acute fluid shifts.
Scenario guide

Scenario guide

Why estimate LBM from height & weight?

Body fat measurement requires special equipment — DEXA scans, bioelectrical impedance scales, or skinfold calipers. Most people only know their height and weight. Fortunately, validated formulas can estimate lean body mass (LBM) from these two measurements alone, using population-average body fat percentages by sex.

How accurate is this estimate?

For average-body individuals, the height & weight LBM estimate is accurate within ±3-5% of a direct measurement. Accuracy decreases for very lean athletes (who have more muscle than average) and for obese individuals (where excess fat distorts the height-weight-LBM relationship).

How to interpret your result

  • LBM as % of weight: Divide LBM by total weight × 100. Example: 55 kg LBM / 70 kg = 79% lean mass
  • Estimated body fat %: 100 − LBM% = body fat%. In the example: 100 − 79 = 21% body fat
  • Tracking changes: Use the same formula consistently to detect trends. Rising LBM with stable weight indicates body recomposition

Which formula to use?

The most common formulas are Jardiman (1980) for men and Boer (1984) for women, both using weight in kg and height in cm. Our calculator computes multiple estimates so you can see the range.

FAQ

Frequently Asked Questions

Can I estimate LBM without measuring body fat?
Yes. Formulas like Jardiman, Boer, and Hume estimate LBM from height and weight alone. They work well for average-body individuals with about ±3-5% accuracy.
Is this accurate for athletes?
Less so. Athletes with above-average muscle mass will get a lower LBM estimate than reality because the formulas assume average body fat. A direct body fat measurement is recommended for athletes.
How do I convert LBM to body fat percentage?
Subtract LBM from total weight to get fat mass, then divide by total weight and multiply by 100. Example: (80-60)/80 × 100 = 25% body fat.
Why are there multiple LBM formulas?
Different researchers developed formulas based on different populations. Our calculator shows estimates from all major formulas so you can see the range.
Can I use LBM from height & weight for medication dosing?
LBM from height & weight is an estimate, not a measurement. For medication dosing, always follow your physician's guidance and confirm which weight parameter is required.
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