Exhalation port
Several embodiments of exhalation ports for use respiratory systems are described. Some of the embodiments provide an elongate body defining a lumen through which gases may flow. A plurality of tapered openings is arranged on a portion of the elongate body and configured to vent gases. A shroud extends from the elongate body and surrounds one or more of the plurality of tapered openings. The exhalation port is arranged to removably connect in-line with a circuit for delivering gases to a patient.
1. An exhalation port for respiratory therapy comprising:
an elongate body, said elongate body being hollow and defining a lumen configured to carry a flow of gases;
a center portion;
a plurality of holes arranged on a portion of the elongate body, the plurality of holes configured to vent gases through the elongate body;
a pressure port extending outward from the elongate body, the pressure port configured to couple with a pressure sampling line that connects to a noninvasive ventilator;
a shroud configured to be removably attached to the elongate body, the shroud configured to extend from the elongate body and surround one or more of the plurality of holes when attached to the elongate body, the shroud comprising a wall and an outer surface;
wherein a plurality of alternating recessed strips and ridges are provided on the wall of the shroud, the plurality of alternating recessed strips and the ridges extending from the outer surface of the shroud toward the center portion, and
wherein the exhalation port is configured to removably connect in-line with a circuit for delivering the flow of gases to a patient.
2. The exhalation port of claim 1 , wherein the wall comprises four recessed strips alternating with four ridges.
3. The exhalation port of claim 2 , wherein the four recessed strips are substantially equally spaced around a circumference of the shroud.
4. The exhalation port of claim 1 , wherein the plurality of alternating recessed strips and ridges reach the center portion of the exhalation port.
5. The exhalation port of claim 1 , wherein the plurality of alternating recessed strips and ridges stop between the outer surface of the shroud and the center portion of the exhalation port.
6. The exhalation port of claim 1 , wherein the shroud extends outward from the elongate body.
7. The exhalation port of claim 6 , wherein the shroud extends outward from the elongate body in a substantially annular form.
8. The exhalation port of claim 1 , wherein the outer surface has a 22 mm taper or a 15 mm taper configured to connect with a filter.
9. The exhalation port of claim 1 , comprising a plurality of notches spaced around the outer surface of the shroud.
10. The exhalation port of claim 9 , wherein the plurality of notches are spaced equally around the outer surface of the shroud.
11. The exhalation port of claim 10 , wherein each of the plurality of notches comprises a notch dimension and a spacing dimension, the notch dimension being substantially equal to or greater than the spacing dimension.
12. The exhalation port of claim 10 , wherein a center line of the notches and a center line of the recessed strips are coincident such that the plurality of notches align with the recessed strips.
13. The exhalation port of claim 10 , wherein a center line of the spacing between the notches and a center line of the ridges are coincident such that the notches align with the ridges.
14. The exhalation port of claim 1 , wherein the elongate body further comprises a first end, wherein the first end of the elongate body comprises a 22 mm male taper and a 15 mm female taper nested within the 22 mm taper.
15. The exhalation port of claim 1 , wherein the shroud is hingedly attached to the elongate body.
16. The exhalation port of claim 1 , further comprising a filter, wherein the filter is a diffuser that is configured to be removably placed in the shroud.