Surgical Airflow Device
20210030259 ยท 2021-02-04
Inventors
Cpc classification
F04B41/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B08B5/02
PERFORMING OPERATIONS; TRANSPORTING
F04B43/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B37/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H04N23/52
ELECTRICITY
International classification
A61B1/00
HUMAN NECESSITIES
F04B37/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An airflow device projects a flow of air proximate to a field of view of a camera. The airflow device includes: a housing shaped to fit over an end of a camera lens; one or more air pumps located within the housing, the one or more air pumps receiving air through one or more air inlets; and one or more air outlets formed in the housing proximate the camera lens. The one or more air outlets are oriented to project air from the one or more air pumps across a field of view of the camera lens.
Claims
1. An airflow device for projecting a flow of air proximate to a field of view of a camera, the airflow device comprising: a housing shaped to fit over an end of a camera lens; one or more air pumps located within the housing, the one or more air pumps receiving air through one or more air inlets; one or more air outlets formed in the housing proximate the camera lens, wherein the one or more air outlets are oriented to project air from the one or more air pumps across a field of view of the camera lens.
2. The airflow device of claim 1, the one or more air outlets comprising: one or more projecting outlets oriented to project air from the one or more air pumps away from an end of the housing and substantially parallel to a field of view of the camera and one or more lens outlets oriented to projected air from the one or more air pumps perpendicular to and across a field of view of the camera.
3. The airflow device of claim 1, the one or more air pumps comprising piezoelectric air pumps.
4. The airflow device of claim 3, wherein the one or more air pumps comprising piezoelectric air pumps are arranged in an array around the housing of the airflow device.
5. The airflow device of claim 4, wherein the piezoelectric air pumps are arranged in an array and are located within walls of the housing of the airflow device.
6. The airflow device of claim 4, the one or more air pumps further comprising at least one check valve in fluid communication with an interior of the one or more air pumps.
7. The airflow device of claim 1, the housing including a lens cover attached thereto and a camera chamber located between the lens cover and the camera when the airflow device is installed on the camera.
8. An airflow device for projecting a flow of air proximate to a field of view of a camera, the airflow device comprising: a housing shaped to fit over an end of a camera lens; one or more air pumps located within the housing, the one or more air pumps receiving air through one or more air inlets, the one or more air pumps comprising piezoelectric air pumps; one or more air outlets formed in the housing proximate the camera lens, wherein the one or more air outlets are oriented to project air from the one or more air pumps across a field of view of the camera lens.
9. The airflow device of claim 8, wherein the one or more air pumps comprising piezoelectric air pumps are arranged in an array around the housing of the airflow device.
10. The airflow device of claim 8, the one or more air outlets comprising: one or more projecting outlets oriented to project air from the one or more air pumps away from an end of the housing and substantially parallel to a field of view of the camera and one or more lens outlets oriented to projected air from the one or more air pumps perpendicular to and across a field of view of the camera.
11. The airflow device of claim 8, wherein the piezoelectric air pumps are arranged in an array and are located within walls of the housing of the airflow device.
12. An airflow device for projecting a flow of air proximate to a field of view of a camera, the airflow device comprising: a housing shaped to fit over an end of a camera lens; one or more air pumps located within the housing, the one or more air pumps receiving air through one or more air inlets; one or more air outlets formed in the housing proximate the camera lens, wherein the one or more air outlets are oriented to project air from the one or more air pumps across a field of view of the camera lens, the one or more air outlets comprising: one or more projecting outlets oriented to project air from the one or more air pumps away from an end of the housing and substantially parallel to a field of view of the camera and one or more lens outlets oriented to projected air from the one or more air pumps perpendicular to and across a field of view of the camera.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Further features, aspects, and advantages of the present disclosure will become better understood by reference to the following detailed description, appended claims, and accompanying figures, wherein elements are not to scale so as to more clearly show the details, wherein like reference numbers indicate like elements throughout the several views, and wherein:
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DETAILED DESCRIPTION
[0031] Various terms used herein are intended to have particular meanings. Some of these terms are defined below for the purpose of clarity. The definitions given below are meant to cover all forms of the words being defined (e.g., singular, plural, present tense, past tense). If the definition of any term below diverges from the commonly understood and/or dictionary definition of such term, the definitions below control.
[0032]
[0033] Referring to the exploded view of
[0034] The housing 14 preferably has a circular cross-sectional area and is further preferably cylindrical in shape having opposing open first and second ends. The housing 14 preferably contains the one or more air pumps 18 and is configured to direct one or more currents of air generated by the one or more air pumps 18 through the housing 14 and out of an end of the housing 14 that is distal from the camera 12 when the housing 14 is installed on the camera 12.
[0035] Referring now to
[0036] The one or more projecting outlets 26 are preferably formed around a circumference of the second end 24 of the housing 14 such that the one or more projecting outlets 26 do not obscure a field of view of the camera 12. The at least one lens outlet 28 is preferably formed as a slot formed through an inner wall of the housing 14 such that air flowing out of the lens outlet 28 flows perpendicular across the housing 14.
[0037]
[0038] Referring now to
[0039] Referring now to
[0040] In one exemplary embodiment, a minimum flow speed for diverting contaminants such as smoke, water, and bloodstreams is determined. As shown in
[0041] Air flows generated by the one or more air pumps 18, and preferably the PZT air pumps, preferably merge within the housing 14 and are emitted from the projecting outlets 26 and at least one lens outlet 28 to form a shield of air and a blade of air protecting a clarity of the lens of the camera 12, as shown in
where h is enthalpy; k is air thermal conductivity; T is temperature; and is a function of viscous dissipation.
[0042] Embodiments of the airflow device 10 advantageously generate one or more airflows in front of the camera 12 to prevent contamination of the camera 12. The airflow device 10 provides a prevention area that is preferably hemispherical in shape and centered around a field of view of the camera 12. Any contamination approaching the camera 12 is deflected to maintain a clear field of view of the camera 12. The projecting outlets 26 and at least one lens outlet 28 are preferably arranged to substantially uniformly project air around the camera 12. Further, the at least one lens outlet 28 projects a blade of air across the lens cover 16 for peeling off any contaminants that may have adhered to the lens cover 16 during a procedure.
[0043] A profile of airflow generated by the projecting outlets 26 is governed by parameters of the projecting outlets 26: an outlet gap B.sub.0, outlet air velocity V.sub.0, nozzle radius R.sub.0, and characterized by a radius of the profile R=f(x, R.sub.0, B.sub.0, p, , P), which is a function of air flow thickness B, gravity g, surface tension , a pressure difference on two sides of the air flow P, and nozzle parameters , as shown in
and, radial momentum equation
in cylindrical coordinates, where X is a vertical coordinate, Rc is an air flow's radius of curvature in a vertical plane. It has been found that because a near-vertical air flow is created, an angle is small except near a closure area. Inner and outer pressures a flow are assumed as equal. Further, the flow radius R and radius of curvature Rc are assumed to be positive.
[0044] The at least one lens outlet 28 preferably projects a flat-fan air flow onto the cover lens 16 of the airflow device 10, as shown in
[0045] Embodiments of the airflow device 10 described herein prevent or reduce the accumulation of debris on the camera 12, such as during a surgical procedure in which the camera 12 is inserted into a cavity. The projecting outlets 26 and at least one lens outlet 28 act to create a shield of air projecting outward from the camera 12 while further creating a blade of air that moves across a field of view of the camera 12. Together, airflow from the projecting outlets 26 and at least one lens outlet 28 cooperate to prevent accumulation of debris or to prevent debris from contacting the cover lens 16 or any portion of the camera 12 to ensure that a field of view of the camera 12 remains unobstructed.
[0046] Additional advantages of the airflow device 10 include integration of the airflow device 10 with a wiper or other device that contacts the cover lens 16 or the camera 12 to clear debris from a field of view of the camera 12. For example, the at least one lens outlet 28 may acts to clear debris from the camera 12 after a wiper or other device clears a lens of the camera 12. Further, the airflow device 10 may act to cool components of a lens cleaning device such as through force convection through airflow generated by the airflow device 10.
[0047] The foregoing description of preferred embodiments of the present disclosure has been presented for purposes of illustration and description. The described preferred embodiments are not intended to be exhaustive or to limit the scope of the disclosure to the precise form(s) disclosed. Obvious modifications or variations are possible in light of the above teachings. The embodiments are chosen and described in an effort to provide the best illustrations of the principles of the disclosure and its practical application, and to thereby enable one of ordinary skill in the art to utilize the concepts revealed in the disclosure in various embodiments and with various modifications as are suited to the particular use contemplated. All such modifications and variations are within the scope of the disclosure as determined by the appended claims when interpreted in accordance with the breadth to which they are fairly, legally, and equitably entitled.