Device and method of radially collapsing medical devices
A device and method of radially collapsing a medical device is disclosed. The device is in the form of an improved crimper which is capable of crimping a medical device. The crimper includes without limitation one or more of, a base plate, a stopper, two side plates, two housing plates with a handle, a plurality of jaws, two guide plates, at least one gear ring and a plurality of gear pins. The jaws, when assembled, collectively form an iris opening. The assembly of the crimper has a central opening through which the iris opening can be accessed. The device to be crimped is introduced in the central opening and held within the iris opening. The crimping is achieved by reducing the size of the iris opening (by moving the jaws simultaneously with respect to each other in synchronized manner) which in turn reduces the diameter of the prosthetic device.
1 . A crimping device for crimping a radially expandable and collapsible prosthetic device for reducing its diameter from at least a partially expanded state to a crimped state, the crimping device comprising:
a base plate;
two housing plates fixed over the base plate such that the housing plates are free to rotate relative to the base plate, each housing plate having a circular tray portion with a central housing opening and a handle portion extending from the tray portion, wherein when the two housing plates are assembled, the tray portions of each of the two housing plates form a first housing for accommodating other components of the crimping device while the handle portions of each of the two housing plates form a handle, at least one of the housing plates is provided with a circular gear ring which is concentrically fixed inside the housing plate, the gear ring being provided with threads, the gear ring having an inner diameter defining an inner circumference and an outer diameter defining an outer circumference;
two guide plates fixed to each other forming a second housing, each guide plate concentrically fitted inside the corresponding housing plate within the inner circumference of the gear ring such that the housing plate is free to rotate relative to the corresponding guide plate, each guide plate having a central guide opening, and a plurality of identical linear guides in the form of rails extending from a central portion of the guide plate extending in a radial direction away from the central portion, each linear guide having a width and a length;
a plurality of identical jaws, each of the jaws having a top surface, a tapered surface and two sides, each jaw further including:
a hole in the top surface, the hole having internal threads,
two grooves, one on each of the two sides of the jaws, wherein width of said grooves corresponds to the width of the linear guides of guide plates such that a linear guide fits inside a groove and a jaw can slide smoothly over the linear guide, and
wherein the tapered surface of each of the jaws collectively form an iris opening when all the jaws are assembled, wherein a size of the iris opening can be varied by controlled movement of the jaws in a synchronous manner on movement of the handle; and
a plurality of identical gear pins, each gear pin including a head portion and a threaded pin portion, wherein the head portion having external threads that mate with the threads of the gear ring and the threads on the pin portion mate with the threads in the holes in the top surface of the jaw,
wherein the central housing opening of the housing plates and the central guide opening of the guide plates coincide with each other to receive a radially expandable and collapsible prosthetic device within the iris opening formed by the jaws for crimping the prosthetic device,
wherein movement of the handle imparts rotational motion to the housing plates around a central round opening, which rotates the gear ring which in turn rotates the head portions of the gear pins, thereby causing the threads in the pin portion of the gear pins to rotate within the internal threads of the holes at the top of the jaws causing the jaws to move in radial direction guided by the linear guides in the guide plates causing the size of the iris opening to change.
2 . The crimping device of claim 1 wherein, the housing plates are held between two side plates that are fixed on the base plate such that the housing plates are free to rotate relative to the side plates.
3 . The crimping device of claim 1 wherein, each housing plate has an internal diameter and a raised edge.
4 . The crimping device of claim 3 wherein the gear ring has an outer diameter which is smaller than an internal diameter of the raised edge of the housing plates.
5 . The crimping device of claim 1 wherein the head portion of each gear pin includes a diameter which is larger than a diameter of the pin portion of the gear pin.
6 . The crimping device of claim 1 wherein, the guide plates include a raised guide edge having a circular round shape outer periphery with an outer diameter smaller than an internal diameter of the gear ring.
7 . The crimping device of claim 1 wherein, the guide plates include a raised guide edge having a polygonal shape outer periphery with an outer dimension smaller than an internal diameter of the gear ring.
8 . The crimping device of claim 7 wherein, a number of sides of the polygon is same as the number of jaws.
9 . The crimping device of claim 1 wherein a number of gear pins and the number of linear guides in each guide plate is same as the number of jaws.
10 . The crimping device of any of claims 1-9 wherein, the number of linear guides in each guide plate, the number of gear pins and the number of jaws is twelve.
11 . The crimping device of claim 1 wherein, the number of linear guides in each guide plate, the number of gear pins and the number of jaws is more or less than twelve.
12 . The crimping device of any of claims 1-9 or 11 wherein, the gear ring is firmly fixed into one of the housing plates while the other housing plate does not have a gear ring.
13 . The crimping device of any of claims 1-9 or 11 wherein, a gear ring is fixed in each of the housing plates, wherein, one gear ring is free to rotate while the other gear ring is firmly fixed in respective housing plate.
14 . The crimping device of claim 1 wherein, a gear ring is fixed in each of the housing plates, wherein, each gear ring is fixed firmly in respective housing plate.
15 . The crimping device of any of claims 1-9, 11, or 14 wherein, the gear ring is fixed into one of the housing plates such that the gear ring is free to rotate while the other housing plate does not have a gear ring.
16 . The crimping device of any of claims 1-9, 11, or 14 wherein, the crimping device is made from a polymeric material or metallic material or a combination of these materials.
17 . The crimping device of any of claims 1-9, 11, or 14 wherein, the base plate includes one or more stoppers which may be removably fixed on the base plate to restrict the downward movement of the handle defining a lowermost position of the handle to prevent the size of the iris opening from reducing further.
18 . The crimping device of any of claims 1-9, 11, or 14 wherein, the prosthetic device is one of a balloon expandable prosthetic device or a self-expandable prosthetic device.
19 . The crimping device of any of claims 1-9, 11, or 14 wherein, the prosthetic device is one of a vascular stent or a trans-catheter prosthetic heart valve.
20 . A method of assembling a crimping device, the method comprising of:
fixing one gear ring inside at least one of two housing plates,
placing a guide plate concentrically within an inner circumference of the gear ring such that the at least one of the two housing plate is capable of rotating freely relative to the guide plate,
fixing a plurality of gear pins on each guide plate such that a head portion of each gear pin is threadedly engaged with the gear ring, wherein, post engagement, each gear pin is free to rotate on its respective axes,
aligning a groove of a plurality of grooves of a plurality of jaws with respective linear guides of the guide plate and simultaneously fixing the plurality of jaws to respective pin portions of the gear pins by providing a threaded connection between a pin portion and the jaw, the fixing of the plurality of jaws resulting in a uniform polygonal iris opening, wherein, all the jaws engage same number of threads of the pin portions so that all the jaws are at the same radial distance from the center of the guide plate,
placing a second guide plate concentrically and firmly fixed onto the guide plate forming a second housing that houses the gear pins and the jaws attached to each other,
placing the other housing plate onto the second guide plate concentrically such that the other housing plate can freely rotate relative to the assembly of the guide plates,
fixing both of the two housing plates firmly with each other such that a first housing is formed after fixing including a handle formed by handle portions of the two housing plates.
21 . The method of assembling the crimping device as claimed in claim 20 wherein, the fixing includes fixing one gear ring inside one of the two housing plates such that the gear ring is either free to rotate or fixed firmly.
22 . The method of assembling the crimping device as claimed in claim 20 wherein, the fixing a plurality of gear pins includes engaging a head portion of each gear pin that projects out from the guide plate, including external threads with threads of the gear ring fixed inside the at least one of the two housing plates.
23 . The method of assembling the crimping device as claimed in claim 20 wherein, the fixing the plurality of jaws to the respective gear pins includes threading a pin portion of each gear pin in internal threads of a hole provided on a top surface of the jaw.
24 . The method of assembling the crimping device as claimed in claim 20 wherein, aligning a plurality of jaws includes engaging one of the plurality of grooves on a side of each jaw with one of the linear guides of the guide plate.
25 . The method of assembling the crimping device as claimed in claim 20 wherein, the fixing of the plurality of jaws resulting in the uniform polygonal iris opening includes fixing tapered portions of all jaws in the guide plate to form a uniform polygonal iris opening.
26 . The method of assembling the crimping device as claimed in claim 20 wherein placing a second guide plate includes engaging a second set of grooves of the corresponding jaw with the linear guides of the second guide plate, and allowing the head portions of the gear pins project out from the assembly of two guide plates such that the gear pins are free to rotate along their respective axes.
27 . The method of assembling the crimping device as claimed in claim 20 wherein, placing the other housing plate onto the second guide plate concentrically includes mating the threads on the head portions of all the gear pins with the threads of the gear ring placed inside the other housing plate if provided.
28 . The method of assembling the crimping device as claimed in claim 20 wherein, the method of assembling includes fitting one or more side plates on each side of the two housing plates such that the openings in the side plates are concentric with central housing openings of the two housing plates and the guide openings of the guide plates forming a central round opening, thereby the two housing plates being free to rotate relative to the side plates and guide plates around the central opening.
29 . The method of assembling the crimping device as claimed in claim 20 wherein, the method of assembling includes fixing assembly of one or more side plates, the two housing plates and the guide plates onto a base plate making the assembly of the one or more side plates and the guide plates stationary and the assembly of housing plates free to rotate around a central round opening by moving the handle upwards or downwards.
30 . The method of assembling the crimping device as claimed in claim 20 wherein, fixing the gear ring includes fixing the gear ring firmly into one of the two housing plates.
31 . The method of assembling the crimping device as claimed in claim 20 wherein, fixing the gear ring includes fixing one gear ring in a manner that the gear ring is free to rotate in one of the two housing plates.
32 . The method of assembling the crimping device as claimed in claim 20 wherein, fixing the gear ring includes fixing one gear ring firmly in respective housing plate while the other gear ring is free to rotate.
33 . A method of assembling a crimping device, the method comprising:
fixing one gear ring inside at least one of two housing plates such that the gear ring is either free to rotate or fixed firmly in the respective housing plate,
placing a guide plate concentrically inside one of the two housing plates within an inner circumference of the gear ring fitted in the respective housing pate such that the respective housing plate is capable of rotating freely relative to the guide plate,
fixing a plurality of gear pins such that a head portion of each gear pin projects out from the guide plate thereby allowing engagement of external threads on the head portion with threads of the gear ring fixed inside the at least one of the two housing plates, wherein all the gear pins are free to rotate on their respective axes,
fixing the jaws to the gear pins by threading a pin portion of the gear pin into internal threads of a hole on a top portion of the jaw and a groove of a plurality of grooves on a side of each jaw engages with linear guides of the guide plate, wherein, all the jaws being arranged such that the jaws engage same number of threads of the gear pins so that all the jaws are at the same radial distance from the center of the guide plate, wherein all the jaws and the gear pins being fixed in a manner that the tapered portions of all jaws collectively form a uniform polygonal iris opening,
placing a second guide plate concentrically and firmly fixed onto the guide plate forming a second housing that houses the gear pins and the jaws attached to each other such that a second set of grooves of the corresponding jaw gets engaged with the linear guides of the second guide plate, and the head portions of the gear pins project out from the assembly of two guide plates such that the gear pins are free to rotate along their respective axes,
placing the other housing plate onto the second guide plate concentrically such that the threads on the head portions of all the gear pins mate with the threads of the gear ring placed inside the other housing plate if provided, such that the other housing plate can freely rotate relative to the assembly of the guide plates,
fixing both of the two housing plates firmly with each other such that after fixing, a first housing is formed, handle portions of the two housing plates form a complete handle, and the assembly of both housing plates can rotate freely relative to the assembly of the two guide plates,
fitting one or more side plates on each side of the assembly of the housing plates and the guide plates such that a central openings in the one or more side plates are concentric with central housing openings of the housing plates and the guide openings of the guide plates forming a central round opening,
fixing the one or more side plates firmly with each other and with the guide plates such that the assembly of the housing plates is free to rotate relative to the one or more side plates and guide plates around the central opening,
the above assembly of the one or more side plates, the housing plates and the guide plates is fixed onto a base plate making the assembly of the side plates and the guide plates stationary and the assembly of housing plates is free to rotate around the central round opening,
wherein movement of the handle imparts rotational motion to the housing plates around the central round opening, which rotates the gear rings which in turn rotates the head portions of the gear pins, thereby causing the threads in the pin portion of the gear pins to rotate within the internal threads of the holes at the top of the jaws causing the jaws to move in radial direction guided by the linear guides in the guiding plates causing a size of the iris opening to change.
34 . A method of crimping a radially collapsible and expandable prosthetic device using the crimping device of claim 1 , the method comprising:
moving a handle of the crimping device in an upward direction thereby increasing a size of an iris opening formed by jaws till the size of the iris opening is more than a diameter of the radially collapsible and expandable prosthetic device to be crimped,
placing the radially collapsible and expandable prosthetic device in at least partially expanded condition within the iris opening,
gradually moving the handle in downward direction thereby reducing the size of the iris opening causing crimping of the prosthetic device in a single step or in multiple steps,
controlling the crimped diameter of the prosthetic device either by stopping downward movement of the handle by judgment or by restricting further downward movement of the handle by a stopper,
moving the handle in the upward direction to increase the size of the iris opening,
removing the crimped prosthetic device from the iris opening.
35 . The method of crimping of claim 33 , wherein the radially collapsible and expandable prosthetic device is balloon expandable.
36 . The method of crimping of claim 33 , wherein the step of placing includes placing the radially collapsible and expandable prosthetic device being crimped over a deflated balloon, in the iris opening.