Nova Patents
CA2967586C

Simulated tissue models and methods

Abstract

Simulated tissue structures for practicing surgical techniques and methods of manufacturing those structures are provided. In particular, a realistic organ model or simulated tissue portion for practicing the removal of a tumor or other undesired tissue followed by suturing a remnant defect as part of the same surgical procedure is provided. The simulated tissue structures include a polyp simulation having a suturable mesh layer that is separable from a defect layer. A simulated colon model with interchangeable and suturable tissue pods is also provided as is a fully suturable rectum model and a rectum model with integrative suturable and removable polyp zones.

CA2967586C, drawing sheet 1
Sheet 1 of 19

Term

9.1 yearsleft in the term

Expires 9 November 2035.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

55 claims: 15 independent, 40 dependent

  1. 1
    CLAIMS:1. A simulated tissue model, comprising: a first layer made of silicone having a substantially planar first surface opposite a substantially planar second surface defining a first thickness therebetween;the first layer having an outer perimeter and a protrusion extending outwardly from the first surface at a protrusion location within the outer perimeter;the first thickness being substantially uniform and the protrusion being defined by an increased first thickness of the first layer;a second layer made of silicone having a substantially planar first surface opposite a substantially planar second surface defining a second thickness therebetween;the second thickness being substantially uniform;the second layer having an outer perimeter and being connected to the first layer such that the outer perimeter of the first layer and the outer perimeter of the second layer are aligned and the first surface of the second layer faces and contacts the second surface of the first layer;and a release layer located directly below the protrusion location between the second surface of the first layer and the first surface of the second layer, wherein the first layer and the second layer are adhered together with adhesive located circumferentially around the release layer so as to create a vacuum between the first and second layers in an area having the release layer, thereby facilitating excision of the protrusion.
  2. 5
    The simulated tissue model of any one of claims 1 to 4 wherein the release layer comprises a substance that prevents adhesion of the first layer of silicone to the second layer of silicone.
  3. 6
    The simulated tissue model of any one of claims 1 to 5 wherein the protrusion has a color that is relatively darker than the rest of the first layer.
  4. 7
    The simulated tissue model of any one of claims 1 to 6 wherein the adhesive is uncured silicone.
  5. 8
    A simulated tissue model, comprising:a first layer made of silicone having a substantially planar first surface opposite a substantially planar second surface defining a first thickness therebetween;the first layer having an outer perimeter and a protrusion extending outwardly from the first surface at a protrusion location on the first surface of the first layer within the outer perimeter;tire first thickness being substantially uniform and the protrusion being defined by an increased first thickness of the first layer;and a second layer made of silicone having a substantially planar first surface opposite a substantially planar second surface defining a second thickness therebetween;the second thickness being substantially uniform;the second layer having an outer perimeter and being connected to the first layer such that the outer perimeter of the first layer and the outer perimeter of the second layer are aligned and the first surface of the second layer faces and contacts the second surface of the first layer defining an interface between the first layer and the second layer, wherein the first layer is selectively adhered to the second layer in at least one or more regions of the interface between the first layer and the second layer, the at least one or more regions for selective adhesion being located outside of a region of the interface between the Date Reçue/Date Received 2023-09-18 first layer and the second layer that is located directly below the protrusion location of the first surface of the first layer to facilitate excision of the protrusion.
  6. 29
    A simulated tissue model, comprising:a first layer made of silicone having a substantially planar first surface opposite a substantially planar second surface defining a first thickness therebetween;the first layer having an outer perimeter and a protrusion extending outwardly from the first surface at a protrusion location within the outer perimeter;the first thickness being substantially uniform and the protrusion being defined by an increased first thickness of the first layer;a second layer made of silicone having a substantially planar first surface opposite a substantially planar second surface defining a second thickness therebetween;the second thickness being substantially uniform;the second layer having an outer perimeter and being connected to the first layer such that the outer perimeter of the first layer and the outer perimeter of the second layer are aligned and the first surface of the second layer faces and contacts the second surface of the first layer, and a release layer between the second surface of the first layer and the first surface of the second layer, in an area on the second surface of the first layer opposite to the protrusion on the first surface of the first layer, wherein the first layer and the second layer are adhered together with adhesive and the release layer prevents adhesion of the second surface of the first layer to the first surface of Date Reçue/Date Received 2023-09-18 the second layer in the area of the second surface of the first layer that is opposite to the protrusion on the first surface of the first layer, such that the first layer and second layer are separable in the area the second surface of the first layer that is opposite to the protrusion, to permit the protrusion to be excised from the tissue model by making an incision through the first layer extending around the protrusion.
  7. 33
    The simulated tissue model of any one of claims 29 to 31 further including a mesh layer embedded within tire first layer.
  8. 34
    The simulated tissue model of any one of claims 29 to 33 wherein the release layer comprises a mold release agent or substance that prevents adhesion of the first layer of silicone to the second layer of silicone.
  9. 35
    The simulated tissue model of any one of claims 29 to 34 wherein die protrusion has a color that is relatively darker than the rest of the first layer.
  10. 36
    The simulated tissue model of any one of claims 29 to 35 wherein the adhesive is uncured silicone. Date Reçue/Date Received 2023-09-18
  11. 37
    The simulated tissue model of any one of claims 29 to 36 wherein the protrusion is formed integrally as an integral protrusion extending from the first surface of the first layer.
  12. 38
    The simulated tissue model of any one of claims 29 to 36 wherein the protrusion is formed as a separate piece located between the first layer and the second layer.
  13. 39
    The simulated tissue model of any one of claims 29 to 36 wherein the protrusion is a separate piece located between the first layer and the second layer and floating between the first and second layers.
  14. 40
    A simulated tissue model, comprising:a first layer made of silicone having a substantially planar first surface opposite a substantially planar second surface defining a first thickness therebetween;the first layer having an outer perimeter and a protrusion extending outwardly from the first surface at a protrusion location on the first surface of the first layer within the outer perimeter;the first thickness being substantially uniform and the protrusion being defined by an increased first thickness of the first layer;a second layer made of silicone having a substantially planar first surface opposite a substantially planar second surface defining a second thickness therebetween;the second thickness being substantially uniform;the second layer having an outer perimeter and being connected to the first layer such that the outer perimeter of the first layer and the outer perimeter of the second layer are aligned and the first surface of the second layer faces and contacts the second surface of the first layer;and a release layer positioned on a portion of the second surface of the first layer opposite the protrusion location on the first surface of the first layer;die release layer preventing bonding between the first layer and the second layer, and die release layer surrounded by an area of the second surface of the first layer with no release layer;wherein the first layer and the second layer are adhered together with adhesive at the area of the second surface of the first layer with no release layer such that the first layer and second layer are separable at the protrusion location to facilitate excision of the protrusion. Date Reçue/Date Received 2023-09-18
  15. 52
    A method for manufacturing a simulated tissue, comprising die steps of:providing an elongated mandrel having an outer surface with at least one outward detent;rotating the mandrel;applying a first layer of uncured silicone on the mandrel;allowing the first layer to cure to form a substantially tubular structure having an inner surface forming a lumen, an outer surface, and at least one well having a depth formed in the inner surface in the location of the at least one outward detent;providing a simulated tissue model as recited in claims 1, 8, 29, or 40;the simulated tissue model representing a polyp simulation;and placing the polyp simulation inside the at least one well of the first layer.