Automated method of manufacturing oral appliances
Disclosed herein are methods of manufacturing an oral appliance, the method comprising the steps of: a) importing into a computer aided design (CAD) computer program a digitized data set obtained from a three-dimensional scan of a patient's dentition; b) preparing a three-dimensional electronic model of the patient's dentition; c) subtracting the three-dimensional electronic model of the patient's dentition from an image of a solid block to obtain an appliance data set; and d) manufacturing a dental appliance in accordance with the appliance data set. Also disclosed are devices made by the above method, and methods of treating a condition, for example a sleep breathing disorder, by using a device made by the above method.
1 . A method of manufacturing an oral appliance, the method comprising the steps of:
a) preparing a three-dimensional electronic model of dentition of a patient;
b) determining a contour curve for the dentition;
c) subtracting the three-dimensional electronic model of a patient's dentition from an image of a solid block to obtain an appliance data set comprising data associated with a portion corresponding to an appliance accessory in or coupled to the oral appliance, a portion to attach the appliance accessory to the oral appliance, or a connection point to connect the appliance accessory, wherein the appliance accessory comprises an electronic chip or an electronic or microelectronic device; and
d) manufacturing a dental appliance in accordance with the appliance data set and the contour curve.
2 . The method of claim 1 , further comprising the step of superimposing the image of a solid block over one of upper or lower dentition of the patient prior to the subtracting step.
3 . The method of claim 2 , wherein the solid block is superimposed such that a gingival surface of the solid block is at approximately the height of contour of a molar tooth of the dentition.
4 . The method of claim 1 , wherein a contour curve is placed at an offset distance at either a buccal or lingual side of the dentition, wherein the offset distance is a fraction of a visible buccal or lingual height of one of a posterior-most molars.
5 . The method of claim 4 , further comprising the step of moving the contour curve towards a gingival line by a distance that is a fraction of the visible buccal or lingual height of one of the posterior-most molars.
6 . The method of claim 5 , further comprising the step of subtracting the portion of the solid block below the contour curve to obtain a contoured block.
7 . The method of claim 6 , wherein the contoured block is the solid block used in the subtracting step.
8 . The method of claim 5 , wherein the contour curve is moved by between about 0 to about 100% of a tooth height.
9 . The method of claim 4 , wherein the offset distance is between about 0 to about 100% of a tooth height.
10 . The method of claim 1 , wherein the solid block has a shape that approximates a shape of the dental appliance.
11 . The method of claim 1 , further comprising repeating steps c) and d) for the other of the patient's upper or lower dentition.
12 . The method of claim 1 , wherein a digitized data set is obtained from:
i) scanning a model of the patient's dentition;
ii) the patient's dentition directly;
iii) X-ray image of the patient's dentition;
iv) computed tomographic (CT) scan of the patient's dentition; or
v) digitized photographs of the patient's dentition.
13 . The method of claim 1 , wherein the appliance accessory comprises a compliance chip, an electronic or microelectronic device, or an electronic device configured to obtain data and communicate the data with another electronic device.
14 . The method of claim 1 , wherein the appliance accessory is selected from the group consisting of fin, strap, affixed sleeve, removable sleeve, straps, anterior hinge, short or long Herbst, jack screw, and Herbst hinge in combination with jack screw.
15 . The method of claim 1 , wherein the appliance accessory comprises an electronic device configured to obtain data and communicate the data with another electronic device.
16 . The method of claim 1 , wherein the appliance is manufactured automatically by a method selected from the group consisting of milling a block, injection molding, three-dimensional printing, computer aided manufacturing technology and hand carving.
17 . An oral appliance manufactured by the method of claim 1 .
18 . A method of treating or ameliorating a condition in a patient, the method comprising:
identifying a patient in need thereof,
obtaining the oral appliance manufactured by the method of claim 1 , and
positioning the oral appliance in the patient's mouth, such that the condition is treated or ameliorated;
wherein the condition is one in which the repositioning of the patient's dentition treats or ameliorates the condition.
19 . The method of claim 18 , wherein the condition is selected from the group consisting of sleep apnea, teeth grinding, and improperly positioned mandible.
20 . A method of manufacturing a splint for a mandibular advancement device, the method comprising the steps of:
a) preparing a three-dimensional electronic model of a patient's dentition;
b) superimposing an image of a solid block over the electronic model of one of the patient's upper or lower dentition,
wherein the solid block has a “U” shape that approximates the curvature of the patient's dentition, and
whereby a gingival surface of the solid block is at about a height of contour of a molar tooth of the dentition;
d) determining the contour curve for the dentition, wherein a contour curve is placed at an offset distance at either a buccal or lingual side of the dentition, wherein the offset distance is between about 20% to about 80% of a visible tooth height of one of the posterior-most molars;
e) moving the height of contour curve towards a gingival line by a distance of about between about 1% to about 50% of the visible tooth height of one of the posterior-most molars;
f) subtracting the portion of the solid block below the height of contour curve to obtain a contoured block;
g) subtracting the three-dimensional electronic model of the patient's dentition from the contoured block to obtain an appliance data set comprising data associated with a portion corresponding to an appliance accessory in or coupled to the oral appliance, a portion to attach the appliance accessory to the oral appliance, or a connection point to connect the appliance accessory, wherein the appliance accessory comprises an electronic chip or an electronic or microelectronic device;
h) automatically manufacturing a dental appliance in accordance with the appliance data set.