Estimate adherent-cell confluency with the grid-count method: confluency% = occupied/total squares × 100 per field, with multi-field mean ± SD and optional time-to-target from the doubling time.
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Key facts
Category
Health
Input types
textarea, number
Output type
json
Sample coverage
4
API ready
Yes
Overview
Estimate adherent-cell confluency from microscopy fields with the grid-count method. Enter occupied squares per field and the total squares in the overlay grid to receive mean confluence, standard deviation, range, a growth-stage interpretation, and an optional hours-to-target figure derived from population doubling time.
When to use
When you need a quantitative confluence percentage from grid counts rather than a visual guess.
Before passaging adherent cells to confirm they sit in the typical 70–90% window.
When you know the doubling time and want the remaining hours until a chosen target confluence.
How it works
1Overlay a counting grid on each random microscopy field and count the occupied squares.
2Enter one occupied-square number per field together with the total squares per field (commonly 100).
3The tool computes confluence % = occupied ÷ total × 100 for every field, then reports the multi-field mean, SD, min–max range and a growth-stage label.
4If a doubling time is supplied it also estimates hours to the target confluence with t = doubling time × log₂(target / current mean).
Use cases
Deciding the optimal moment to passage HEK293, HeLa or other adherent lines.
Recording culture density before transfection, harvest or other timed experiments.
Projecting remaining growth hours from current confluence and a known doubling time.
Examples
1. Three-field count approaching the passaging window
Cell-culture technician
Background
An adherent monolayer is imaged in three random fields under a standard 10×10 (100-square) grid.
Problem
A visual estimate is too subjective; a mean confluence value and remaining time to 90% are needed before the weekend.
How to use
Enter the occupied-square counts 62, 58, 66, set total squares to 100, doubling time to 24 hours and target confluence to 90%.
Mean confluency 62.0% (SD 4.0%, range 58–66%, 3 fields). Approaching confluence — the ideal 70–80% passaging window is near. Approximately 12.9 hours to reach 90% at a 24 h doubling time.
2. Single-field check of a near-confluent dish
Graduate student
Background
A dish of adherent cells appears nearly full after a quick look at one representative field.
Problem
Need to confirm whether the culture has reached the near-confluent stage and should be split immediately.
How to use
FAQ
How is confluency calculated?
Confluency % equals occupied squares divided by total squares times 100 in each field; the tool then returns the mean, SD and range across the fields you entered.
How many fields should I count?
Count 3–5 random fields per dish to obtain a reliable mean and standard deviation.
What do the growth-stage labels mean?
Sparse (<10%), subconfluent (10–50%), approaching confluence (50–80%), near confluent (80–95%) and fully confluent (≥95%). Routine passaging is usually performed at 70–90%.
When is the time-to-target estimate shown?
Only when you enter a population doubling time in hours; otherwise the estimate is omitted.
What if I enter only one field?
A single count still yields a confluence percentage; SD is reported as 0 and no range variation is displayed.