A semi-rigid collar support wraps the collar band to keep points aligned during wear without the discomfort of rigid inserts.
Unequal-length straps and a cushioned layered structure let users fasten an abdominal support belt independently with stable fit and less pressure.
Semi-elastic flexor columns in a lumbar corset generate passive righting torque to reduce fatigue while improving trunk stability and movement.
Differentiated fabric elasticity targets abdominal compression and bust support while avoiding over-compression, friction, and restricted movement.
A higher-modulus abdominal panel delivers localized shaping while reducing excess pressure on the waist, groin, and back.
A multi-layer sheet with an adhesive layer increases lifting force and load-bearing support while easing pelvic and lower-back pressure.
A fabric-and-adhesive sheet in the lower abdominal portion improves upward lift and load-bearing support for pregnant users.
See how supportive elastics and an absorbent core combine abdominal support with lochia management in one post-natal slip.
A supportive garment uses a non-stretchable posterior panel and abdominal compression to stabilize the torso.
A chest binder uses a front part with 1-5% elastic fabric elongation and an X-shaped back piece to stabilize breast tissue.
A magnetic collar stay system holds shirt collars in precise alignment through fabric layers using integrated neodymium magnets.
Segmented compression zones and breathable fabrics in this corset prevent fat gathering and lymphatic obstruction for natural shaping.
Segmented removable belly panel and adjustable waistband resolve slippage caused by elastic stretching while extending garment usability post-pregnancy.
A stretchable shorts design uses a narrowing back center line to fit the hip lower region.
Nested pocket layers suspend pads inside a shapewear garment, hiding construction seams that typically show under clothing.
Unitary foundation garment uses contoured foam pad and inverted V opening to prevent muffin top and uni-butt effects.
A maternity corset uses a tensile spine section and elastic lateral sections to provide targeted abdominal support.
An abdominal hook and loop fastener on a half corset enables rapid fastening while avoiding skin irritation from side support strips.
Segmented straps pull the belly back toward the spine, reducing lower back pressure while remaining breathable and machine washable.
Integrated pouches and elastic panels manage bulky drainage equipment while maintaining breathable compression for surgical recovery.
Segmented clothing pieces join via inflexible snap fasteners to create rigid longitudinal ribs, eliminating the need for metal support bars.
Strategic elastic bands shift upper leg flesh upward to sculpt a slimmer silhouette and lift the buttocks.
A body-shaping corset uses distinct front and back material properties to provide targeted compression.
Segmented belly wrap uses finger-like projections with mating means to stabilize core muscles and provide adjustable fit for postpartum recovery.
A fabric lace-hole system uses superimposed ribbons and stitching to form durable eyelets without metal components.
Segmented abdominal support plates with differential elasticity deliver targeted compression while maintaining mobility and regulating body temperature.
Segmented tensionable arms apply constant pressure above hip joints to relieve pain while stabilizing the anteriorly tilted pelvis.
Elastic belt with adjustable reinforcing elements pivots to conform to patient hip-to-waist contours, resolving discomfort from fixed-angle supports.
A satin undergarment with one-way stretch fabric provides smooth support and visual body size reduction.
An irregular array of tacky protrusions on a wearable band dissipates stress foci in fibrous connective tissue, preventing stretch mark formation.
Elastic support bands on the torso rear provide structural stability without restricting mobility.
Adjustable support panels apply graduated compression to lift loose skin, avoiding painful tape methods.
Segmented pelvic cradle design mitigates shear forces and fluid accumulation at the transverse incision site while maintaining patient mobility.