Mandibular occlusal inhibitor
A device for maintaining a patient's mouth in an open position during a medical procedure is provided. The device includes a cylindrical body configured to be received in the patient's mouth. A flange extending from an edge of the body is configured to engage the face of the patient, and preferably, the device includes a retainer for retaining the body in the patient's mouth.
This application is a continuation of co-pending U.S. application Ser. No. 10/858,275, filed on Jun. 1, 2004, which is a continuation of U.S. application Ser. No. 10/350,920, filed on Jan. 24, 2003, which is set to issue as U.S. Pat. No. 6,743,017 on Jun. 1, 2004, which claims priority to U.S. Provisional Patent Application No. 60/393,286, filed Jul. 2, 2002. Each of the foregoing applications are hereby incorporated herein by reference.
FIELD OF THE INVENTIONThe present invention relates to a device for holding a patient's mouth in an open position during medical, dental and surgical procedures.
DESCRIPTION OF THE RELATED ARTMedical professionals frequently perform procedures that require the patient's mouth to be held in an open position. For example, a patient's mouth must be held open during endoscopic procedures to provide clearance for an endoscope and other instruments. A patient's mouth must also be held in an open or semi-open position when dental bite-wing x-ray images are taken. A similar need exists in trauma evaluation and diagnosis of spinal injuries.
Spinal injuries require prompt evaluation by emergency health care providers. Early recognition of possible cervical spine injury (CSI) is of critical importance. Spinal injury may be difficult to diagnose in patients who are uncooperative, have altered mental status, or other distracting injuries. In such cases, it is difficult to obtain radiographic imagery to make a proper evaluation of the patient. During the initial assessment, great care must be taken to adequately stabilize the patient's spine and undertake cervical spine radiography for optimal patient evaluation. Obtaining proper cervical spine films, particularly the open-mouth odontoid view (OMV), in the pediatric and adult populations can be a challenging experience even under the best patient circumstances. Patient-related concerns include inability to cooperate during the procedure, repeat films, excessive radiation exposure, and delays in care.
Data from the National Spinal Cord Injury Statistics Center (NSCISC) reports that approximately 10,000 new cases of cervical spine injury (CSI) occur annually, with 1,100 of these cases occurring in children. Boys sustain injury more often than do girls and the most common type of CSI is a combined fracture and dislocation injury. The primary mechanism by which children sustain this serious injury involves blunt trauma from motor vehicle crashes, falls and sports-related accidents. Children with congenital anomalies such as Trisomy 21, Klippel-Feil syndrome, mucopolysaccharidosis are at a greater risk for CSI due to bony abnormalities of the spine and laxity of the neck and spine ligaments.
Although CSI in children is rare, it generally carries a greater degree of morbidity and mortality in the younger pediatric population with associated head trauma. Spinal trauma in the young child often occurs in the higher cervical spine area (C1-C3) due to the child's larger head-to-body ratio and laxity of their ligaments. As the pediatric spine matures, it approaches adult-like configuration by around eight years of age, as described in Herman, M. et al., Cervical Spine Disorders in Children, Orthop. Clin. Nor. Amer. 1999, 30(3): 457-465. Although the adult spine can distribute traumatic forces more evenly throughout the cervical vertebrae, they generally have a higher incidence of CSI than children, and sustain primarily lower C-spine injury below the C3 level, as described in Manary, M. et al., Cervical Spine Injuries in Children, Ped. Ann. 1996, 25(8): 423-428.
It is estimated that 10-25% of patients with CSI suffer extension of their injuries (paralysis or death) from delays in diagnosis, or unwarranted manipulation in the emergency department (ED) setting. Failure to adequately diagnose CSI promptly can lead to severe neurologic disability and morbidity. Two of the more common errors are failure to obtain adequate C-spine roentgenograms and difficulty in x-ray interpretation.
According to the American College of Radiology Appropriateness Criteria and the American College of Surgeons, the “golden standard” for trauma evaluation of the cervical spine area is the three-view x-ray that includes the lateral, the anteroposterior (AP), and the OMV. See American College of Radiology, ACR Appropriateness, Criteria for Cervical Spine Trauma, 1995: 243-246; American College of Surgeons, Advanced Trauma Life Support (ATLS) Manual, 1997: 217-229. Proper cervical spine x-rays for the evaluation of neck pain and neck injury in both children and adults are critical. However, obtaining the OMV x-rays can be technically difficult and time consuming for both the patient and the emergency health care provider. See Buhs, C. et al., The Pediatric Trauma C-spine: Is the Odontoid View Necessary? J. Ped. Surg. 2000, 35(6): 994-997; Bonadio, W., Cervical Spine Trauma in Children: Part 1. General Concepts, Normal Anatomy, Radiographic Evaluation, Am. J. Emerg. Med. 1993, 11(2): 158-165; Schwartz, D. Introduction to Radiology, “In: Emergency Radiology”, New York: McGraw-Hill, 2000,1-7, 291; Swischuk, L. et al., Is the Open-Mouth View Necessary in Children Under 5 Years?, Ped. Rad. 2000, 30:186-189. Depending on the patient's condition, it may be very difficult to have the patient open their mouth and keep the mouth open while radiography is performed. Problems may be attributed to the patient's age, the patient's mental impairment, unconsciousness, pain or injury that distracts the patient, inability to open the patient's mouth, and difficulties in positioning the patient.
Accordingly, it is desirable to provide a comfortable oral device that may used in a variety of applications, including radiography, to securely hold a patient's mouth in an open position.
SUMMARY OF THE INVENTIONIn light of the foregoing, the present invention relates to a device for maintaining a patient's mouth in an open position during a diagnostic, surgical or other medical procedure. The invention may be used in various applications, including but not limited to, radiology, endoscopy, dental treatment and surgical procedures. In radiology, for example, the invention can be used to facilitate OMV x-rays for spinal trauma evaluation. One or more components of the device are formed of radiolucent materials. In this way, the device may be used in applications such as radiography without visually obstructing x-ray images.
One or more inner flanges may be provided on the device that extend into the mouth. The inner flange or flanges may engage the interior of the mouth and teeth to hold the mouth in an open position. Grooved or serrated surfaces may be provided on the inner flanges so that the inner flanges are less prone to sliding or slipping as they contact the patient's teeth. The device may also have one or more outer flanges. In one embodiment of the invention, the outer flange or flanges form loop handles that assist in placing the device in a patient's mouth. In another embodiment of the invention, the outer flange or flanges include rests or tabs that support the patient's lips while the device is inserted in the patient's mouth.
One or more wings may extend from the device to help keep the device in the patient's mouth. In one embodiment of the invention, the wings have solid faces and contain an adhesive pad. The adhesive pad adheres to skin around the patient's mouth when the device is inserted in the patient's mouth to keep the device in place. In another embodiment of the invention, the wings have hollow apertures. Adhesive tape may be wrapped through the apertures and applied to the skin around the patient's mouth to keep the inserted device in place. Alternatively, a flexible strap may be inserted through the apertures and pulled over the patient's head to assist in holding the inserted device in place. The invention will be more fully described by reference to the following drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
Referring now to
Referring now to
The body portion 12 is formed of a soft, light-weight radiolucent material, such as a soft polymer, composite or thermoplastic. As mentioned above, plastics are radiolucent, which permits them to be used in radiography. Soft plastics also provide sufficient rigidity to support a patient's jaw while offering some flexibility to reduce the stresses that may be exerted on the patient's mouth. Lighter-weight plastic materials also reduce the potential for tooth chipping or damage that could occur when the device 10 is inserted quickly, such as in an emergency procedure. Preferably, the device 10 is formed of an inexpensive and disposable material, such as polyethylene.
In
The inner flanges 20 are configured to contact a patient's teeth in a stable and comfortable position after the device 10 is inserted into the patient's mouth. The device 10 is structured so that the patient's teeth engage or clamp down on the inner flanges 20. Preferably, the inner flanges 20 comprise surfaces that grip the patient's teeth and minimize sliding or shifting of the device 10 in the patient's mouth. Slide resistant surfaces may be formed in a number of ways. For example, the inner flanges 20 may be molded to provide a contoured or textured surface that frictionally engages the patient's teeth. In
Referring again to
For some patients, such as small children, the patient's mouth may be smaller than the outer periphery of the inner flanges 20. Referring again to
Referring again to
In
The apertures 15 may also be used with a flexible strap 40 to hold the device 10 in place. Referring to
As stated earlier, the device 10 is configured to be inserted into a patient's mouth so that the body portion 12 contacts the facial area around the patient's mouth. Preferably, the body portion 12 has one or more lip rests 13, as shown in
In the preferred embodiment, the device 10 may be produced with a flavor element to be tasted by the patient when the device is inserted in the patient's mouth. The flavoring element may be one a variety of compositions or flavors, such as mint or citrus for example. The flavoring is applied to the inner flanges 20, which extend into the patient's mouth when the device is in use. The flavor element may be deposited on the device using a variety of substances or processes. For example, the flavor element may be deposited with a spray, grease or coating applied on the device 10. Moreover, the flavor element may be mixed into the material that forms the device to encapsulate the flavoring element to thereby preserve the flavor element.
Referring now to
Referring now to
It is to be understood that the above-described embodiments are illustrative of only a few of the many possible specific embodiments which can represent applications of the principles of the invention. Numerous and varied other arrangements can be readily devised in accordance with these principles by those skilled in the art without departing from the spirit and scope of the invention as set forth in the claims.
Claims
1. A mouth positioning device, comprising:
- a bite block receivable between a patient's teeth and having a forward end;
- a flange intersecting the forward end of the bite block, projecting outwardly from the forward end of the bite block, forming an enlarged surface operating as a stop to limit the depth of insertion of the bite block into the patient;
- wherein the flange has first and second terminal edges spaced apart from the intersection of the flange and the bite block, and the bite block has a length projecting away from the intersection of the bite block and the flange, and the length of the bite block is less than the distance between the first and second terminal edges.
2. The device of claim 1 wherein the bite block comprises a plurality of serrations formed on an exterior surface of the bite block.
3. The device of claim 1 comprising a retainer configured to retain the bite block in the patient's mouth.
4. The device of claim 3 wherein the retainer comprises a pair of adhesive strips spaced apart from one another and connected to a surface of the flange to releasably engage the patient's face.
5. The device of claim 4 wherein the retainer comprises a loop of flexible material configured to form a strap extending around the patient's head.
6. The device of claim 1 wherein the bite block comprises first and second halves separated by a space and the bite block is radially deformable so that the first and second halves are displaceable toward one another.
7. The device of claim 1 wherein the bite block has a width, and the length of the bite block is less than the width of the bite block.
8. A mouth positioning device, comprising:
- a bite block receivable between a patient's teeth and having a forward end;
- a flange intersecting the forward end of the bite block, projecting outwardly from the forward end of the bite block, forming an enlarged surface operating as a stop to limit the depth of insertion of the bite block into the patient;
- wherein the bite block is configured so that the bite block is insertable into a patient's mouth between the patient's teeth without depressing the patient's tongue.
9. The device of claim 8 wherein the bite block is resiliently deformable radially such that the bite block is compressible prior to insertion into the patient whereby the bite block resiliently radially expands to bear against the teeth of the patient after insertion.
10. The device of claim 8 comprising a retainer for connecting the device to the patient while the bite block is disposed between the patient's teeth.
11. The device of claim 8 wherein the bite block comprises a first half and a second half and the first half is separated from the second half by a gap.
12. The device of claim 11 comprising a resiliently deformable bridge connecting the first half and the second half so that the first half can be displaced toward the second half.
13. The device of claim 12 wherein a connector connects the first half to the second half, and wherein the connector has a thickness and the gap between the first and second halves is wider than the thickness of the connector.
14. The device of claim 8 wherein the bite block comprises a plurality of serrations formed on an exterior surface of the bite block.
15. The device of claim 8 wherein the device comprises and aperture allowing access into the patient's mouth when the device is positioned within the patient's mouth.
16. A method for using a mouth positioning device for a medical procedure, comprising the steps of:
- providing a mouth positioning device comprising a bite block;
- inserting the mouth positioning device into a patient so that the bite block is disposed between a patient's teeth, wherein the bite block is positioned to retain the mouth of the patient in an open position without depressing the tongue of the patient; and
- performing a medical procedure on the patient while the mouth positioning device is disposed within the patient's mouth.
17. The method of claim 16 wherein the bite block is resiliently deformable so that the bite block can be compressed radially inwardly, and the method comprises the step of compressing the bite block radially inwardly prior to inserting the bite block into the patient's mouth.
18. The method of claim 16 wherein the bite block comprises first and second halves spaced apart from one another, and the method comprises the step of displacing the first half toward the second half to compress the bite block prior to inserting the bite block into the patient's mouth.
19. The method of claim 16 wherein the bite block is formed of a radiolucent material and the medical procedure comprises taking an x-ray of the patient while the bite block is disposed within the patient's mouth.
20. The method of claim 16 wherein the mouth positioning device comprises a retainer and the method comprises the step of retaining the mouth positioning device to the patient with the retainer.
Type: Application
Filed: May 26, 2005
Publication Date: Sep 29, 2005
Inventor: Kathleen O'Neill (Newtown Square, PA)
Application Number: 11/138,009