This is a question about what the trial was designed to answer, and the honest response is that it was not designed to answer this.
ApoB and LDL-C disagree because they measure different things: LDL-C is the cholesterol mass carried in the LDL fraction, ApoB is a count of atherogenic particles. Small dense particles carry less cholesterol each, so a person with many small particles has a concordantly higher ApoB than their LDL-C suggests. When they disagree, ApoB is the better risk marker.
Absolute risk reduction, worked: if the control-arm event rate is 8.0 per cent over the follow-up period and the hazard ratio is 0.80, the treated rate is approximately 6.4 per cent, the absolute risk reduction is 1.6 percentage points, and the number needed to treat is 1 ÷ 0.016 ≈ 63 over that period. A 20 per cent relative reduction and a number needed to treat of 63 are the same finding stated two ways, and only one of them sounds impressive.
I would resist reading a subgroup finding as a result. Subgroups in these trials were not powered, and a striking subgroup in a large trial is the expected consequence of multiplicity.
The papers are readable. Read the paper rather than the summary of the paper, especially where the summary is enthusiastic.
edited 19 Jul 2026 by kwn_analytical — added the method parameters
8Thank you — the worked example is what makes this usable. – amara_nwachukwu 24 days ago 7Related: the same reasoning applies to the counter-ion question. – b_delacroix 9 months ago add a comment