The head positioning device described herein is in the field of devices to support and position a person, such as a child. More specifically, the device supports a head of a person during a medical procedure such as surgery. The prone positioning device is utilized along with a surgical table, such as an eye cart.
Embodiments of the head positioning device described herein include a smaller, or head, portion, and a larger, or torso, portion. Each, or both, of the portions include one or more removable sections, sometimes referred to as inserts. The sections may be made of foam or other conformable materials, and are added or removed in order to customize the head positioning device to the size of a patient that is positioned within the device.
In some embodiments, the device supports a head and upper body of a patient during a surgical procedure in a prone or supine position on a surgical table, and includes a support portion having a receiving cavity which defines an area in which to support a patient, and one or more removable sections within the receiving cavity, wherein removal of the one or more removable sections causes the receiving cavity to increase the defined area in which to support the patient.
The head positioning device supports the head, neck and all or a portion of the torso of a person in a prone or supine position. The device is typically utilized to support a patient during a medical procedure. Without a device to support a patient during a medical procedure, the medical personnel have to create a temporary support for the patient using materials such as towels, pillows or other items at hand.
In some embodiments, the head positioning device supports the head, neck and upper torso while a patient is positioned on an eye cart or other surgical table used, for example and without limitation, during ENT (ear, nose, and throat) and ophthalmic surgeries. In various embodiments, the head positioning device includes support portions, such as a head support portion and a torso support portion that are configured and adapted to support a patient, such as a child, on a surgical table. The support portions may include removable sections that are utilized to adjust a size of the support portions to adapt to a size of a patient.
The head positioning device also includes attachment mechanisms, such as straps, that securely attach and/or fix the head positioning device to a surgical table, such as an eye cart.
Referring now to
The head support portion 110 includes a head receiving cavity 115 which is adapted to receive, support, and/or position the head of a patient, such as the head of a child, during a surgical procedure. The torso support portion 120 includes a torso receiving cavity 125, which is adapted to receive, support, and/or position the torso of the patient, such as the shoulders, during the surgical procedure. The head receiving cavity 115 and the torso receiving cavity 125 each comprise a lower central surface 135 disposed along the length of the device, and two angled surfaces 145 extending upwardly from the lower central surface 135 to top surfaces 150. The torso receiving cavity 125 is typically wider than the head receiving cavity 115, though in embodiments they may be the same width. In an embodiment of the device, the angle 410 (shown in
The device 100 is typically formed from one or more types of foam to provide firm but comfortable support to the patient, such as memory shape foams. The foam may be covered with an outer skin to resist fluids and wear to the foam, or it may be exposed foam as appropriate for the application. The device may be produced in one or more sizes designed to fit a variety of sizes of patient, from children to adults of various size. The device 100 is contoured to fit to the body of the patient, and to firmly but comfortably support the patient in position for the medical procedure.
The head positioning device 100 also includes a baseboard 130. The baseboard, which may be formed of a material that is more rigid than the foam-based head support portion 110 and torso support portion, maintains the support portions in a flat configuration and facilitates a rigid, secure attachment of the device 100 to a surgical table via the attachment straps 140. The rigid material may be wood, plastic, metal, semi-rigid foam or similar materials.
The device 100 also comprises attachment straps 140 for releaseably attaching the device 100 to a surgical table on which it will be used to support a patient. Each strap 140 may be secured to its other end underneath the table as depicted in
Referring to
The cavities may be formed in a variety of sizes and geometries, such as geometries that are similar to the shape of a patient. For example, a cavity may have a shape similar to a shape of a patient's head, shoulders, torso, neck, and so on. In the depicted embodiment the cavities are uniform in width along the length of the device 100.
In some embodiments, the device 100 may be provided with one or more removable sections or inserts 200, such as foam inserts positioned at the edges or boundaries of the cavities 115 or 125. When customizing a head positioning device 100 for a patient, the inserts 200 may be removed or added, depending upon the size or shape of a patient, among other things. The removable inserts 200 may be layered, as shown in
Referring to
As described herein, in some embodiments, the head positioning device 100 includes a support portion having a removable insert or inserts, such as one or more removable sections within a receiving cavity. Referring to
The removable inserts 400 and 405, when located within the receiving cavity 115, for example, provides a narrower or smaller area in which to support a patient. If a larger area is required, the inserts 400 or 405 may be removed, either one or both, which provides a wider or larger area in which to support a patient. Removable inserts 400 and 405 mate to angled surface 145 and a portion of the lower central surface 135, and provides an angled surface 415 to define the narrow cavity 115 or 125. Angle 410 between lower surface 135 and angled surface 145 may vary as needed, but in some embodiments is between 90° and 145°. The device 100 may be provided with both removable inserts 400 and 405 or only a single insert 405 on each side.
The removable inserts 400 and 405 may be torn away when preparing or customizing the head positioning device for a specific patient. In one embodiment of torso support portion 120 of the device as depicted in
For example, a head positioning device 100 having the removable sections shown in
Of course, one of ordinary skill in the art will realize that the head positioning device 100, and its various support portions, may include any number of removable inserts or sections, and not only the number of removable inserts or sections shown herein.
Referring now to
Further, the head positioning device may be manufactured or formed in a variety of ways to facilitate removal of inserts or sections. For example, the inserts or sections may be attached to the support portions via perforated sections of the covering or of the support material itself, may be attached via slots, hook-and-loop material or other mating mechanisms, may be placed without any specific attachments, and so on.
Thus, in some embodiments, the head positioning device 100, such as the various head positioning devices described herein, is configured to securely support and maintain a patient, such as a pediatric patient, regardless of size or shape, during a surgical procedure, such as an ENT or ophthalmic procedure. The device 100 may include a customizable head support portion 110, a customizable torso support portion 120, or both. The device 100 may be customizable via removable or tearable inserts located within receiving cavities of the support portions, which facilitate easy and effective resizing or other customizations of the device 100, among other benefits.
Many different arrangements of the various components depicted, as well as components not shown, are possible without departing from the spirit and scope of the present invention. Embodiments of the present invention have been described with the intent to be illustrative rather than restrictive. Alternative embodiments will become apparent to those skilled in the art that do not depart from its scope. A skilled artisan may develop alternative means of implementing the aforementioned improvements without departing from the scope of the present invention.
It will be understood that certain features and subcombinations are of utility and may be employed without reference to other features and subcombinations and are contemplated within the scope of the claims. Not all steps listed in the various figures need be carried out in the specific order described.
This non-provisional application claims priority of U.S. Provisional Patent Application No. 61/701,111 filed on Sep. 14, 2012, which is incorporated herein by reference.
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| Number | Date | Country | |
|---|---|---|---|
| 61701111 | Sep 2012 | US |