Steel is springy. Tall steel-framed buildings and bridges routinely sway in wind, which is usually harmless to the structure but annoying to occupants. Unless you get harmonic oscillation, where the energy stored in the motion builds up, which can be a problem and has destroyed bridges. Much of seismic design involves connections which raise the resonant frequency of the structure so it can't oscillate at a low frequency with high amplitude. That's what those triangular reinforcement beams one sees in San Francisco really do. It's also what all those rectangular trusses under the Golden Gate Bridge do. Those were a retrofit.
Wood's flexibility usually causes problems at joints. Nailed joints are not very strong in tension. Most construction today in areas with earthquakes or high winds involves metal reinforcement of joints. There's a collection of galvanized sheet metal parts for that at any Home Depot.
Tension joints for wood are seen in classic Japanese construction, in boats, and in cabinetry. Not so much in modern houses, partly because they work better in hardwood. I wonder if, in the next installment, the author will discuss those.