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Tooth resorption is the progressive loss of dental hard tissue caused by odontoclastic activity. It can begin inside the pulp chamber or on the external root surface, and because it is often silent in its early stages, it is frequently discovered only when advanced damage has already occurred.
Resorption is a physiological or pathological process in which odontoclasts remove dentin, cementum, and sometimes enamel. In the permanent dentition, pathological resorption is always abnormal and requires investigation. The two broad categories are internal resorption, which originates within the pulp space, and external resorption, which begins on the root surface.
Both forms can be further classified as inflammatory or replacement resorption. Inflammatory resorption is driven by infection and inflammation, while replacement resorption, most often seen after severe trauma, involves the gradual substitution of root structure by bone.
Internal resorption begins when odontoclasts are activated within the pulp chamber or root canal, usually after pulp injury such as trauma, caries, or restorative procedures. The classic radiographic appearance is a smooth, symmetrical, oval-shaped radiolucency that remains centered within the canal space.
Because the lesion is hidden inside the tooth, it is often asymptomatic until it perforates the root surface or weakens the tooth to the point of fracture. Pink discoloration of the crown may appear when the resorptive process approaches the enamel from within.
External resorption begins on the root surface and is far more common than internal resorption. It is classified by its clinical behavior. Surface resorption is a self-limiting response to minor trauma. Inflammatory resorption follows damage to the periodontal ligament combined with infection in the canal, producing a bowl-shaped radiolucency that progresses rapidly.
Replacement resorption, or ankylosis, occurs when the root becomes fused to bone and is progressively replaced by it. Cervical resorption, also called invasive cervical resorption, is a particularly aggressive form that begins just below the gingival margin and can spread extensively beneath the enamel.
Diagnosis begins with a careful history, including any previous trauma, orthodontic treatment, bleaching, or periodontal therapy. Clinical examination may reveal pink spots, mobility, or a metallic sound on percussion in cases of ankylosis.
Radiographs are essential. Periapical films show the location and shape of the defect, while cone-beam computed tomography (CBCT) provides three-dimensional information about the extent of the lesion, the presence of perforation, and the thickness of remaining tooth structure. CBCT is particularly valuable for planning treatment of cervical resorption.
Internal resorption is treated endodontically. The resorptive tissue is removed during root canal treatment, the canal is disinfected, and the defect is filled with a biocompatible material. If the resorption has perforated the root, the perforation site must be sealed, often with mineral trioxide aggregate (MTA) or a similar material.
The prognosis depends on the size and location of the defect. Small lesions confined to the canal respond well to conventional endodontic therapy, while extensive perforations or resorption near the apex carry a poorer outlook.
Treatment of external resorption depends on its type. Inflammatory resorption requires root canal treatment to eliminate the intraradicular infection that drives the process, after which the resorptive activity usually ceases. Replacement resorption cannot be reversed, and the tooth is managed expectantly until it is eventually lost or extracted.
Cervical resorption is treated surgically. The resorptive tissue is curetted, the defect is restored with composite or a biocompatible cement, and the area is sealed. Early detection greatly improves the chance of preserving the tooth, which is why regular radiographic review is important after trauma or orthodontic treatment.
Prevention focuses on minimizing the triggers of resorption. Prompt endodontic treatment after trauma, careful orthodontic force control, and avoidance of excessive bleaching temperatures all reduce risk. Patients with a history of dental trauma should be followed radiographically for several years.
The overall prognosis of resorption is highly variable. Small, early lesions can often be treated successfully, while advanced resorption with perforation or extensive root loss frequently leads to extraction. Early diagnosis through routine examination and imaging remains the single most important factor in a favorable outcome.
Internal resorption may be discovered incidentally on a routine radiograph, since it is often asymptomatic. External inflammatory resorption typically follows trauma and is associated with mobility and tenderness. Cervical resorption may present with a pink spot at the gingival margin that bleeds on probing.
The differential diagnosis includes caries, which appears as a radiolucency but is usually associated with a cavitated lesion, and root fracture, which has a characteristic radiographic line. CBCT is invaluable in distinguishing these conditions and in assessing the true extent of the resorptive defect before treatment is planned.
External apical root resorption is a well-recognized complication of orthodontic treatment, particularly when heavy forces are applied over a long period. Most cases are mild and clinically insignificant, but severe resorption can shorten the roots and compromise the long-term prognosis of the teeth.
Patients at higher risk include those with pre-existing short roots, a history of trauma, and those undergoing prolonged treatment with large tooth movements. Radiographic monitoring during orthodontic treatment allows early detection, and treatment plans can be adjusted to minimize further resorption.
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