Systems and methods for therapeutic nasal neuromodulation
The invention generally relates to systems and methods for therapeutically modulating nerves in or associated with a nasal region of a patient for the treatment of a rhinosinusitis condition.
1. A device for treating a condition within a nasal cavity of a patient, the device comprising:
a shaft;
a multi-segment end effector operably associated with the shaft, the multi-segment end effector comprising a first segment and a separate second segment spaced apart from the first segment along a longitudinal axis along which a distal most portion of the shaft lies, wherein each of the first and second segments is transformable between a retracted configuration and an expanded deployed configuration and comprises an associated architecture in the expanded deployed configuration,
wherein the first segment comprises:
a first set of support structures comprising at least a first pair of loop-shaped struts having a bilateral geometry when the first segment is in the expanded deployed configuration, wherein a first one of the first pair of loop-shaped struts extends in a first direction perpendicular to the longitudinal axis and is positioned within a first side of a first half of the first segment and a second one of the first pair of loop-shape struts extends in a second direction perpendicular to the longitudinal axis and is positioned within a second side of the first half of the first segment such that the first pair of looped-shaped struts cooperatively form an inwardly extending concave shape relative to the longitudinal axis; and
a second set of support structures comprising at least a second pair of loop-shaped struts having a bilateral geometry when the first segment is in the expanded deployed configuration, wherein a first one of the second pair of loop-shaped struts extends in a third direction perpendicular to the longitudinal axis and is positioned within a first side of a second half of the first segment and a second one of the second pair of loop-shape struts extends in a fourth direction perpendicular to the longitudinal axis and is positioned within a second side of the second half of the first segment such that the second pair of looped-shaped struts cooperatively form an inwardly extending concave shape; and
a handle operably associated with the shaft and comprising a shape associated with the architecture of at least the first segment of the end effector in the expanded deployed configuration.
2. The device of claim 1 , wherein the handle comprises a grip portion comprises a top, a bottom, sides, a proximal end, and a distal end.
3. The device of claim 1 , wherein at least one of the top, bottom, and sides of the grip portion of the handle is associated with architecture of at least the first segment in the deployed configuration.
4. The device of claim 1 , wherein the top of the grip portion is associated with the first set of support structures of the first segment in the expanded deployed configuration and the bottom of the grip portion is associated with the second set of support structures of the first segment in the expanded deployed configuration.
5. The device of claim 1 , wherein the shape of the grip portion provides for ambidextrous use for both left and right handed use and conforms to hand anthropometrics to allow for at least one of an overhand grip style and an underhand grip style during use in a procedure.
6. The device of claim 5 , wherein the shape of the grip portion provides a user with a physical confirmation of an orientation of the first and second segments of the end effector when in the expanded deployed configurations.
7. A method for treating a condition within a nasal cavity of a patient, the method comprising:
providing a treatment device comprising:
a shaft;
a multi-segment end effector operably associated with the shaft and comprising a first segment and a separate second segment spaced apart from the first segment along a longitudinal axis along which a distal most portion of the shaft lies, wherein each of the first and second segments is transformable between a retracted configuration and an expanded deployed configuration and comprises an associated architecture in the expanded deployed configuration, wherein the first segment comprises a first set of support structures comprising at least a first pair of loop-shaped struts having a bilateral geometry when the first segment is in the expanded deployed configuration, wherein a first one of the first pair of loop-shaped struts extends in a first direction perpendicular to the longitudinal axis and is positioned within a first side of a first half of the first segment and a second one of the first pair of loop-shape struts extends in a second direction perpendicular to the longitudinal axis and is positioned within a second side of the first half of the first segment such that the first pair of looped-shaped struts cooperatively form an inwardly extending concave shape relative to the longitudinal axis, and a second set of support structures comprising at least a second pair of loop-shaped struts having a bilateral geometry when the first segment is in the expanded deployed configuration, wherein a first one of the second pair of loop-shaped struts extends in a third direction perpendicular to the longitudinal axis and is positioned within a first side of a second half of the first segment and a second one of the second pair of loop-shape struts extends in a fourth direction perpendicular to the longitudinal axis and is positioned within a second side of the second half of the first segment such that the second pair of looped-shaped struts cooperatively form an inwardly extending concave shape, and
a handle operably associated with the shaft and comprising a shape associated with the architecture of at least the first segment of the end effector in the expanded deployed configuration;
advancing the multi-segment end effector to one or more target sites within the nasal cavity of the patient, the multi-segment end effector configured for delivering energy to one or more target sites within the nasal cavity in the expanded deployed configuration;
positioning the multi-segment end effector at the one or more target sites based, at least in part, on orientation of the handle,
deploying the multi-segment end effector at the one or more target sites; and
delivering energy from the multi-segment end effector to tissue at the one or more target sites.
8. The method of claim 7 , wherein the handle comprises a grip portion comprises a top, a bottom, sides, a proximal end, and a distal end.
9. The method of claim 7 , wherein at least one of the top, bottom, and sides of the grip portion of the handle is associated with architecture of at least the first segment in the expanded deployed configuration.
10. The method of claim 7 , wherein the top of the grip portion is associated with the first set of support structures of the first segment in the expanded deployed configuration and the bottom of the grip portion is associated with the second set of support structures of the first segment in the expanded deployed configuration.
11. The method of claim 7 , wherein the shape of the grip portion provides for ambidextrous use for both left and right handed use and conforms to hand anthropometrics to allow for at least one of an overhand grip style and an underhand grip style during use in a procedure.
12. The method of claim 11 , wherein the shape of the grip portion provides a user with a physical confirmation of an orientation of the first and second segments of the end effector when in the expanded deployed configurations.