An explicit construction in a manifestly Lorentz-invariant and cyclica
lly symmetric form is given for a three-hadron (H) coupling through th
eir respective (<q(q)over bar>) constituents interacting via a quark t
riangle loop under the most general conditions of unequal mass kinemat
ics at both the elementary quark and composite-hadron levels. The only
ansatz employed is that the Hq(q) over bar vertex function Gamma(H) a
t each vertex i is a function of (q) over cap(i), the relative momentu
m transverse to the corresponding hadron momentum P-i, an assumption w
hich can be justified from several independent angles. The resulting s
tructure Gamma(H) approximate to D((q) over cap)circle times 0 (q) ove
r cap, with D((q) over cap) being a model-independent function, has pr
oved crucial for an explicit integration over the time-like component
of the loop momentum, and thus provided an analytical, cyclically symm
etric structure free of overlapping pole singularities. The applicatio
nal potential of this quantity is outlined.