Gallbladder model
First Claim
1. An anatomical model for surgical training, comprising:
- a first layer having an inner surface and an outer surface;
the first layer having a thickness defined between the inner surface and the outer surface;
the first layer being configured to simulate at least a portion of a first anatomical structure and having a first perimeter;
a second layer having an inner surface and an outer surface;
the second layer defining a thickness between the inner surface and the outer surface;
the second layer having a second perimeter;
the second layer overlaying the first layer such that the outer surface of the second layer faces the inner surface of the first layer; and
at least one second simulated anatomical structure;
the at least one second simulated anatomical structure defining a third perimeter around the at least one second simulated anatomical structure;
the at least one second simulated anatomical structure being connected to the inner surface of the second layer; and
wherein the outer surface of the second layer is connected to the inner surface of the first layer at least partially around the location of the at least one second simulated anatomical structure; and
wherein the second layer is connected to the first layer outside the third perimeter such that the second layer is permitted to tent with respect to the first layer when the second layer is pulled away from the first layer at a location inside the third perimeter.
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Accused Products
Abstract
An anatomical model for surgical training is provided. The model includes a first layer simulating a liver and a second layer including a simulated gallbladder. A third layer having an inner surface and an outer surface is provided between the first and second layer. The outer surface of the third layer is adhered to the first layer at location around the simulated gallbladder and the simulated gallbladder is adhered to the inner surface of the third layer. A fourth layer is provided that overlays both the second layer and the simulated gallbladder. A frame is embedded within the first layer and is connectable to a support. The model provides a substantially upright projection of a simulated gallbladder and liver in a retracted orientation ideally suited for practicing laparoscopic cholecystectomy when inserted inside a simulated insufflated cavity of laparoscopic trainer.
459 Citations
25 Claims
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1. An anatomical model for surgical training, comprising:
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a first layer having an inner surface and an outer surface;
the first layer having a thickness defined between the inner surface and the outer surface;
the first layer being configured to simulate at least a portion of a first anatomical structure and having a first perimeter;a second layer having an inner surface and an outer surface;
the second layer defining a thickness between the inner surface and the outer surface;
the second layer having a second perimeter;
the second layer overlaying the first layer such that the outer surface of the second layer faces the inner surface of the first layer; andat least one second simulated anatomical structure;
the at least one second simulated anatomical structure defining a third perimeter around the at least one second simulated anatomical structure;
the at least one second simulated anatomical structure being connected to the inner surface of the second layer; andwherein the outer surface of the second layer is connected to the inner surface of the first layer at least partially around the location of the at least one second simulated anatomical structure; and wherein the second layer is connected to the first layer outside the third perimeter such that the second layer is permitted to tent with respect to the first layer when the second layer is pulled away from the first layer at a location inside the third perimeter. - View Dependent Claims (2, 3, 4, 5, 6)
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7. An anatomical model for surgical training, comprising:
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a first layer having an inner surface and an outer surface;
the first layer having a thickness defined between the inner surface and the outer surface;
the first layer being configured to simulate at least a portion of a first anatomical structure and having a first perimeter;a second layer having an inner surface and an outer surface;
the second layer defining a thickness between the inner surface and the outer surface;
the second layer having a second perimeter;
the second layer overlaying the first layer such that the outer surface of the second layer faces the inner surface of the first layer; andat least one second simulated anatomical structure;
the at least one second simulated anatomical structure defining a third perimeter around the at least one second simulated anatomical structure;
the at least one second simulated anatomical structure being connected to the inner surface of the second layer; andwherein the outer surface of the second layer is connected to the inner surface of the first layer at least partially around the location of the at least one second simulated anatomical structure; and further including a third layer having an inner surface and an outer surface;
the third layer defining a thickness between the inner surface and the outer surface and having a fourth perimeter;
the third layer overlays the second layer and the at least one second simulated anatomical structure such that the outer surface of the third layer faces the inner surface of the second layer and the at least one second simulated anatomical structure;
wherein the outer surface of the third layer is connected to the inner surface of the second layer. - View Dependent Claims (8, 9, 10, 11, 12, 13)
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14. An anatomical model for surgical training, comprising:
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a first layer having an inner surface and an outer surface;
the first layer having a thickness defined between the inner surface and the outer surface;
the first layer being configured to simulate at least a portion of a first anatomical structure and having a first perimeter;a second layer having an inner surface and an outer surface;
the second layer defining a thickness between the inner surface and the outer surface;
the second layer having a second perimeter;
the second layer overlaying the first layer such that the outer surface of the second layer faces the inner surface of the first layer; andat least one second simulated anatomical structure;
the at least one second simulated anatomical structure defining a third perimeter around the at least one second simulated anatomical structure;
the at least one second simulated anatomical structure being connected to the inner surface of the second layer; andwherein the outer surface of the second layer is connected to the inner surface of the first layer at least partially around the location of the at least one second simulated anatomical structure; wherein the outer surface of the second layer is connected to the inner surface of the first layer along at least a part of the first perimeter such that a majority of a middle portion or portions interior from the second perimeter is not attached to the first layer and remains mobile to separate away from the first layer and wherein the first perimeter and the second perimeter are edges of the first layer and second layer, respectively.
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15. An anatomical model for surgical training, comprising:
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an anatomical portion comprising; a first layer having an inner surface and an outer surface interconnected by a top side, a bottom side, a left side and a right side;
the inner surface being substantially planar;
the first layer having a thickness defined between the inner surface and the outer surface;
the first layer being configured to simulate at least a portion of a liver;a second layer having an inner surface and an outer surface interconnected by a top side, a bottom side, a left side and a right side;
the second layer overlays the first layer such that the outer surface of the second layer faces the inner surface of the first layer;
the outer surface of the second layer being connected to the inner surface of the first layer along at least part of a first perimeter;
the second layer defining a thickness between the inner surface and the outer surface;
wherein the thickness of the second layer is smaller than the thickness of the first layer;a third layer including at least one simulated anatomical structure;
the at least one simulated anatomical structure being connected to the inner surface of the second layer; anda fourth layer having an inner surface and an outer surface interconnected by a top side, a bottom side, a left side and a right side;
the fourth layer overlaying the second layer and the third layer such that the outer surface of the fourth layer faces and contacts the inner surface of the second layer and faces and contacts the at least one simulated anatomical structure;
the outer surface of the fourth layer being connected to the inner surface of the second layer along at least part of a second perimeter;
the fourth layer defining a thickness between the inner surface and the outer surface;
wherein the thickness of the fourth layer is smaller than the thickness of the first layer. - View Dependent Claims (16, 17, 18, 19, 20, 21, 22, 23, 24, 25)
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Specification