Aspirator flow path designs and related geometric structures
Abstract
In part, the disclosure relates to an aspirator having a handle that includes a suction connector extending from a proximal end face, a substantially cylindrical sleeve mount having an outer surface and a shoulder. A tubular member defining a bore and having flared end disposed in a suction head having one or more cantilevered protuberances can extend from the sleeve mount. The substantially cylindrical sleeve mount is in relief with respect to the shoulder and extends distally therefrom. The substantially cylindrical sleeve mount defines an aperture. The suction connector bore, bore of tubular member, inner cavity of handle and suction head bore define a fluid flow path or cavity. The aspirator can include a sleeve that receives the suction head. The sleeve engages and interferes with the sleeve mount. The suction head and sleeve's inner wall have one or more engineered clearances between them to enhance assembly.
Claims
exact text as granted — not AI-modified1 - 30 . (canceled)
31 . An aspirator comprising:
a tubular member comprising a flared end and a proximal tubular end, the tubular member defining a bore, the proximal tubular end comprising an inner diameter and an outer diameter; and an elongate handle comprising a distal end face defining an aperture, the tubular member extending from the aperture, wherein the proximal tubular end, an elongate section of the bore and the tubular member are disposed in the elongate handle, a proximal end face comprising a suction connector extending therefrom, the suction connector and the elongate handle defining a first flow cavity, the elongate handle defining a second flow cavity, the second flow cavity disposed within the handle, the second flow cavity adjacent to and in fluid communication with the first flow cavity, the second flow cavity adjacent to the proximal tubular end and in fluid communication with the bore, wherein the first flow cavity, the second flow cavity and the elongate section of the bore define an inner flow path within the handle.
32 . The aspirator of claim 31 further comprising a suction head defining a third flow cavity in fluid communication with the inner flow path, the suction head attached to the flared end.
33 . The aspirator of claim 32 wherein the suction head and the handle comprise a polymer material.
34 . The aspirator of claim 31 wherein the first flow cavity has a truncated cone shape, wherein a diameter of the second flow cavity is less than a diameter of the first flow cavity at an interface of the first flow cavity and the second flow cavity.
35 . The aspirator of claim 31 wherein the distal end face of handle comprises a sleeve mount.
36 . The aspirator of claim 31 wherein a diameter of second flow cavity is greater than the outer diameter.
37 . The aspirator of claim 31 wherein interface between first flow cavity and second flow cavity comprises a stepped transition.
38 . The aspirator of claim 32 wherein the tubular member is a metal cylindrical tube or a metal tapered tube.
39 . The aspirator of claim 31 wherein the flared end has a flared outer diameter, wherein a ratio of the flared outer diameter to the outer diameter of the proximal tubular end is less than about 1.4.
40 . The aspirator of claim 31 wherein a length of the second flow cavity is less than a length of the first flow cavity.
41 . The aspirator of claim 31 wherein a length of the elongate section of the bore in the handle is greater than the length of the second flow cavity.
42 . The aspirator of claim 31 wherein an inner diameter of the bore is less than or equal to a diameter of the second flow cavity.
43 . The aspirator of claim 32 wherein a curved transition is defined at a junction of an inner surface of the third flow cavity of the suction head and the flared end.
44 . The aspirator of claim 43 wherein the curved transition is a radius or smooth curve.
45 . The aspirator of claim 32 wherein the outer diameter of the tubular member is greater than or equal to a diameter of the second flow cavity.
46 . The aspirator of claim 31 wherein a diameter of first flow cavity is less than about 0.5 inches, wherein a diameter of the first flow cavity is widest dimension of inner flow path of handle.
47 . An aspirator comprising:
a tubular member comprising a flared end and a proximal tubular end, the tubular member defining a bore, the proximal tubular end comprising an inner diameter and an outer diameter; a suction head attached to the flared end, the suction head defining a suction head bore, the suction head bore in fluid communication with the bore; and an elongate handle comprising
a suction connector, and
a section of the tubular member disposed within the handle,
the handle defining a proximal flow cavity adjacent to and in fluid communication with the suction connector,
the handle defining a transitional flow cavity between the section of the tubular member and the proximal flow cavity;
the section of the tubular member, the transitional flow cavity and the proximal flow cavity defining an inner flow cavity in fluid communication with the bore of the tubular member and the suction head bore,
wherein a diameter of transitional flow cavity is less than diameter of proximal flow cavity at interface of transitional flow cavity and proximal flow cavity.
48 . The aspirator of claim 47 wherein the flared end has a flared outer diameter, wherein a ratio of the flared outer diameter to the outer diameter of the proximal tubular member is less than about 1.4.
49 . The aspirator of claim 47 wherein diameter of transitional cavity is greater than the outer diameter.
50 . The aspirator of claim 47 wherein interface between transitional flow cavity and proximal flow cavity comprises a stepped transition.
51 . The aspirator of claim 47 wherein the tubular member is a metal cylindrical tube or a metal tapered tube.
52 . The aspirator of claim 47 wherein the proximal flow cavity is a truncated cone.
53 . The aspirator of claim 47 wherein a curved transition is defined at a junction of an inner surface of the suction head bore and the flared end.
54 . The aspirator of claim 53 wherein the curved transition is a radius or smooth curve.
55 . The aspirator of claim 47 wherein the outer diameter of the tubular member is greater than or equal to a diameter of the transitional flow cavity.
56 . The aspirator of claim 47 wherein the inner diameter of the tubular member is less than a diameter of the transitional flow cavity.
57 . The aspirator of claim 47 , wherein the suction head comprises a lip that defines an opening of the suction head bore, wherein two or protuberances that extend outward from the lip, wherein the two or more protuberances are sized and shaped to create a flow channel when in contact with surface of biological tissue, wherein the flow channel is in fluid communication with the inner flow cavity.Join the waitlist — get patent alerts
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