System and methods for adjusting variable variable geometry, height, weight distribution dynamics in orthotic devices and equipment
An active suspension orthotic support system is disclosed. The suspension orthotic support system comprises at least one variable resistance beam extending from a heel section to a mid-arch section of the footwear, wherein rotation of the variable resistance beam from a first position to a second position causes a resistance provided by the variable resistance beam to vary between a minimum resistance to a maximum resistance.
1. An orthotic platform comprising:
a heel section;
a front section; and
an mid-arch section between the heel section and the front section; and
an adjuster, inserted at an angle through the heel section and extending toward the mid arch section, said adjuster comprising:
a cylindrical hollow bushing extending from said heel section, said cylindrical hollow bushing including a bushing screw thread on a first end of said cylindrical hollow bushing; and
a rod extending from said mid-arch section through said cylindrical hollow bushing to said heel section, said rod comprising:
a first section proximate to said mid arch-section;
a variable resistance beam section attached to said first section, said variable resistance beam section comprising, in a cross section transverse to a length of said rod,
a major axis; and
a minor axis, wherein said major axis is wider than said minor axis; and
a cylindrical section comprising:
a cylindrical section first end attached to said variable resistance beam section; and
a cylindrical section second end, wherein said cylindrical section extends through said cylindrical hollowing bushing to position said cylindrical section second end adjacent said heel section; and
a rod screw thread positioned between said variable resistance beam section and said heel section, wherein said rod screw thread engages said bushing screw thread; and
an indentation on said cylindrical section second end, wherein said indentation is configured to:
enable a rotation of said cylindrical section, wherein said rotation altering said major axis and said minor axis of said variable resistance beam section with respect to said mid arch section.
2. The orthotic platform of claim 1 , further comprising a slot extending through said indentation.
3. The orthotic platform of claim 1 , wherein said indentation comprises one of: a triangle, a rectangle, a multi-surfaced polygon, a semicircle and an extended semicircle.
4. The orthotic platform of claim 1 , wherein the heel section is one of: a polymer and an elastomeric material.
5. The orthotic platform of claim 1 , wherein said rod rotates within said bushing.
6. The orthotic platform of claim 1 , wherein said mid arch section comprises:
a pocket, wherein the first section of said rod is rotatable within said pocket.
7. The orthotic platform of claim 1 , wherein said rod further comprises:
a head attached to the mid arch section wherein said rod rotates within said head.
8. The orthotic platform of claim 1 , wherein said rod is composed of a material selected from a group consisting of: plastics, thermoplastic polymers, copolymers, polyesters, vinyl chloride polymers, polycarbonate resin, metal, re-enforced plastics and nano-reinforced plastics.
9. The orthotic platform of claim 1 , wherein said cross section of said variable resistance beam section of said rod is selected from a group consisting of: rectangular, elliptical and cylindrical shaft comprising at least one external spline.
10. The orthotic platform of claim 1 , wherein said angle is within a range of 1 degree to 45 degrees with respect to a surface upon which said heel section rests.
11. The orthotic platform of claim 1 , the cylindrical hollow bushing comprising:
at least one indicia on a second end of said cylindrical hollow bushing, said indicia providing an indication of an orientation of said variable resistance beam section with respect to said mid-arch section.
12. The orthotic platform of claim 1 , wherein the platform is selected from a material being at least one of: rigid, semi-rigid and flexible.