Related Experiment Video
Updated: May 20, 2026

Screening Ion Channels in Cancer Cells
Published on: June 16, 2023
Determination of strong ion gap in healthy dogs
Pamela K Fettig1, Dennis B Bailey, Kristi M Gannon
1Oradell Animal Hospital, Paramus, NJ 07652, USA. Astivet2@optonline.net
Objective:
To determine and compare reference intervals of the strong ion gap (SIG) in a group of healthy dogs determined with 2 different equations.
Design:
Prospective observational study.
Setting:
Tertiary referral and teaching hospital.
Animals:
Fifty-four healthy dogs.
Interventions:
None.
Measurements:
Serum biochemistry and blood gas analyses were performed for each dog. From these values, SIG was calculated using 2 different equations: SIG(1) = SID(a) {[Na (+)] + [K(+)] - [Cl(-)]+ [2 × Ca(2+)] + [2 × Mg(2+)] - [L-lactate]}- SID(e) {TCO(2) + A(-)} and SIG(2) = [albumin] × 4.9-anion gap. Reference intervals were established for each SIG equation using the mean ± 1.96 × standard deviation (SD).
Results:
For SIG(1), the median was 7.13 mEq/L (range, 1.05-11.30 mEq/L) and the derived reference interval was 1.85-10.61 mEq/L. Median SIG(2) was -0.22 mEq/L (range, -5.34-6.61 mEq/L) and the mean SIG(2) was -0.09 mEq/L (95% confidence interval for the mean, -0.82-0.65 mEq/L). The derived reference interval was -5.36-5.18 mEq/L. The results of the SIG calculations were significantly different (P < 0.0001) between the 2 equations used.
Conclusion:
The 2 equations used to calculate SIG yielded significantly different results and cannot be used interchangeably. The authors believe SIG(2) to be a more accurate reflection of acid-base status in healthy dogs, and recommend that this calculation be used for future studies.
Related Concept Videos
Ionic Strength: Overview
Diagnosing Acidosis and Alkalosis
First, the pH level is assessed to determine whether the blood pH is normal (7.35–7.45), low (acidosis), or high (alkalosis).
Next, the PCO2 and HCO3− values are examined to...
Theory of Strong Electrolytes
Ionic Association
The Debye–Hückel Theory of Electrolyte Solutions
Tonicity in Animals

