trainlog/docs/domain/programming_foundations.md

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# Programming foundations and MAX context
TRAINING KNOWLEDGE V1 supplies knowledge for future reasoning about training.
It does not generate workouts, prescribe loads or provide clinical
rehabilitation advice. Principles below distinguish intervention findings from
Trainlog's practical interpretation of them.
## Adaptation and exposure
Resistance-training interventions improve strength and muscle size across many
studied configurations. Higher loads tend to favor high-load strength outcomes;
multiple sets characterize better-ranked hypertrophy configurations in a large
network meta-analysis. These are population-level comparisons, not an optimal
program for every person. Load, sets and frequency interact.
[Currier and colleagues](https://pubmed.ncbi.nlm.nih.gov/37414459/)
Volume can mean sets, repetitions or accumulated load. Those are different
quantities. Machine kilograms multiplied by repetitions do not establish
equal muscle exposure across different devices. Direct and indirect muscle
participation cannot be assigned universal equal set credit. Frequency helps
distribute exposure and fatigue; no weekly frequency or unbounded more-volume
rule is encoded here.
Relative external load and effort are also different. A heavy task need not
end in failure; a lighter task can. Evidence does not establish that momentary
failure is generally required for strength or hypertrophy, but it does not
imply that arbitrarily easy sets provide the same stimulus. Failure definitions,
actual effort and compared volume constrain interpretation.
[Grgic and colleagues](https://pubmed.ncbi.nlm.nih.gov/33497853/),
[Refalo and colleagues](https://pubmed.ncbi.nlm.nih.gov/36334240/)
Failure conditions generally produce greater acute fatigue in the reviewed
experiments. Acute markers cannot supply a universal recovery clock or predict
an individual's long-term result. Repeated performance, actual execution and
context matter when a future system interprets recovery.
[Vieira and colleagues](https://pubmed.ncbi.nlm.nih.gov/34881412/)
## Progression, selection and coverage
Progression and specificity require consistent definitions of the task and
its successful performance. The historical ACSM position stand supplies these
organizing principles; its numeric schedules and load recommendations are not
adopted as V1 rules. Comparative outcomes are interpreted using the subsequent
reviews above.
[ACSM progression position stand](https://pubmed.ncbi.nlm.nih.gov/19204579/)
Exercise variation can change regional exposure and task practice. The limited
intervention literature supports considering purposeful variation, not a
requirement to randomize exercises or change them as often as possible. Stable
exercise context also makes progress interpretable.
[Kassiano and colleagues](https://pubmed.ncbi.nlm.nih.gov/35438660/)
Practical selection should compare the intended joint action, muscle role,
range of motion, stability demand and available equipment. BODY ZONES alone
cannot establish a substitute. Leg extension and leg curl share `thighs` while
training opposing knee actions. Seated and prone curls share knee flexion but
differ in the length context of biarticular muscles.
[OpenStax lower-limb anatomy](https://openstax.org/books/anatomy-and-physiology-2e/pages/11-6-appendicular-muscles-of-the-pelvic-girdle-and-lower-limbs),
[Maeo and colleagues](https://pubmed.ncbi.nlm.nih.gov/33009197/)
Coverage therefore considers movement functions as well as zones: horizontal
and vertical pushing/pulling, knee and hip extension, knee flexion, hip
abduction/adduction, plantarflexion, trunk motion and resisting trunk motion.
This is an authored reasoning aid. It is not a universal checklist that proves
a program balanced, effective or suitable for a particular individual.
## What a recorded MAX can establish
`max_weight_kg` records an observed result owned by an exercise occurrence.
Interpreting it requires its resistance and execution context. At minimum,
consider exercise identity, physical equipment, external-versus-assistance
mode, machine settings, range of motion, support, technique and success
criterion. Unknown context stays unknown.
An explicit MAX result without repetition count is not proven to be a one-rep
maximum. Ordinary sets do not become measured maxima by being the heaviest
available observation. No estimated 1RM or percentage prescription follows
from the value alone. A shared BODY ZONE, movement family or machine does not
make distinct exercises' results interchangeable.
Stack labels need not equal handle resistance. Pulley routing, lever arms,
cams, tare and friction affect external moments; human moment arms add further
variation. Manufacturer documentation for an identified example demonstrates
a non-unit cable ratio, but supplies no conversion for the unconfirmed local
equipment.
[Precor pulley documentation](https://www.precor.com/en-US/products/RUD0915)
For otherwise matched assisted performance, less help represents greater
unsupported demand. Body mass, assistance mechanism and motion remain part of
the comparison. Do not treat assistance as added external weight or assume
that body mass minus displayed assistance gives a calibrated effective load.
The source exercise and resistance context must remain visible when knowledge
is composed with history.