Laminate membrane, an implant compromising the laminate membrane and a method of manufacturing the same
There is provided a laminate membrane for an implant, comprising: an inner layer having an inner layer thickness; a first covering layer disposed on one side of the inner layer, the first covering layer having a first covering layer thickness; and a second covering layer disposed on another side of the inner layer, the second covering layer having a second covering layer thickness.
1. An embolisation device comprising:
a core;
a plurality of flexible bristles extending outwardly from the core, the flexible bristles having a contracted delivery configuration and an expanded deployed configuration in which the flexible bristles extend radially outwardly from the core; and
a laminate membrane mounted to the core,
wherein the laminate membrane comprises:
an inner layer having an inner layer thickness;
a first covering layer disposed on one side of the inner layer, the first covering layer having a first covering layer thickness; and
a second covering layer disposed on another side of the inner layer, the second covering layer having a second covering layer thickness,
wherein the laminate membrane is configured to have a contracted delivery configuration and an expanded deployed configuration configured to diametrically occlude flow through a bodily lumen and form an embolisation, and
wherein the stiffness of the inner layer is greater than the stiffness of at least one of the first covering layer and the second covering layer.
2. The embolisation device of claim 1 , wherein the embolisation device is configured to be delivered to the bodily lumen by a delivery catheter when the laminate membrane is in the contracted delivery configuration, and wherein in the contracted delivery configuration at least a portion of the laminate membrane is configured to abut an inner wall of the delivery catheter.
3. The embolisation device of claim 1 , wherein the laminate membrane is disposed adjacent to at least some of the flexible bristles.
4. The embolisation device of claim 3 , wherein at least some of the flexible bristles are disposed on either side of the laminate membrane.
5. The embolisation device of claim 1 , wherein the surface energy, surface roughness, or static coefficient of friction of the at least some of the plurality of flexible bristles is less than the laminate membrane.