Dry powder inhalation device
Delivery of a dry powder via inhalation can be performed using an inhalation device having an inhalation tube and a hollow extension housing an assembly of components including a plurality of impellers, a puncturing device, and a dry powder container. The delivery of dry powder through the inhalation device is facilitated by the puncturing device puncturing the dry powder container, the impellers directing air flow, and the configuration of the extension and inhalation tube.
1. A dry powder inhalation device comprising: an inhaler body, the inhaler body comprising one or more sidewalls extending between an open first end and an open second end and surrounding an interior volume, at least a portion of the inhaler body being sized and shaped to receive an assembly of components within the interior volume; and the assembly of components, wherein the components are arranged in series within the interior volume and include: a dry powder container that contains a measured amount of dry powder, wherein one or more walls of the dry powder container are configured to be selectively opened thereby allowing the dry powder to be released from the container into the internal volume of the inhaler body, and a plurality of impellers positioned within the internal volume, wherein each of the plurality of impellers has a top side and an opposing bottom side and includes a series of blades defining openings therebetween and is configured to rotate about a respective central axis, and wherein the plurality of impellers are configured to direct air and the released dry powder toward the first end and wherein at least two of the plurality of impellers are configured to rotate about their respective axes in opposite rotational directions.
2. The dry powder inhalation device of claim 1 , further comprising:
one or more puncturing devices configured to selectively open the one or more walls of the dry powder container.
3. The dry powder inhalation device of claim 2 , wherein the one or more puncturing devices are positioned within the interior volume at a level that is above a top side of an impeller and below the bottom side of the dry powder container.
4. The dry powder inhalation device of claim 1 , wherein the plurality of impellers are configured to rotate upon application of negative pressure to the first end of the inhaler body by a user inhaling air through the inhaler body from the first end.
5. The dry powder inhalation device of claim 4 , wherein the rotation about the respective central axis of one of the plurality of impellers directs the air and the dry powder from above the top side of the impeller axially through the openings and through the internal volume of the inhaler body toward the first end.
6. The dry powder inhalation device of claim 5 , wherein the plurality of impellers include a respective central axis pin and are supported within the internal volume by one or more mounts that are configured to receive an end of the respective central axis pin.
7. The dry powder inhalation device of claim 1 , wherein one or more of the plurality of impellers are positioned within the interior volume at a level that is below the dry powder container and are configured to draw air and dry powder from the dry powder container through openings provided on a bottom side of the dry powder container.
8. The dry powder inhalation device of claim 1 , wherein one or more of the plurality of impellers are positioned within the interior volume at a level that is above the dry powder container and are configured to direct air into the dry powder container through openings provided on at least a top side of the dry powder container.
9. The dry powder inhalation device of claim 1 , wherein:
one or more of the plurality of impellers are positioned within the interior volume at a level that is below the dry powder container and are configured to draw air and dry powder from the dry powder container through openings provided on a bottom side of the dry powder container; and
one or more of the plurality of impellers are positioned within the interior volume at a level that is above the dry powder container and are configured to direct air into the dry powder container through openings provided on at least a top side of the dry powder container.
10. The dry powder inhalation device of claim 1 , wherein the plurality of impellers are joined to define an impeller assembly.
11. The dry powder inhalation device of claim 1 , wherein at least two of the plurality of impellers have different respective diameters.
12. The dry powder inhalation device of claim 1 , wherein at least two of the plurality of impellers have different respective heights.
13. The dry powder inhalation device of claim 1 , wherein at least one of the plurality of impellers is configured to achieve different airflow properties within the internal volume from at least one other of the plurality of impellers.
14. The dry powder inhalation device of claim 1 , wherein the plurality of impellers are configured to aerosolize the dry powder.
15. The dry powder inhalation device of claim 1 , wherein the one or more sidewalls surrounding the interior volume comprise one or more orifices therethrough, wherein the one or more orifices allow airflow through the one or more sidewalls surrounding the interior volume into the interior volume of the inhaler body.
16. The dry powder inhalation device of claim 15 , wherein at least one impeller of the assembly is positioned within the interior volume at a level that is between one or more of the orifices and the first end of the inhaler body.
17. The dry powder inhalation device of claim 1 , wherein one or more of the components defining the assembly of components are positioned within the interior volume independent of the remaining components.