The mandible is the largest and most frequently fractured bone of the facial skeleton, and its management sits at the interface between trauma surgery and restorative dentistry. Treatment has shifted over four decades from prolonged maxillomandibular fixation towards rigid internal fixation with ...

The mandible is the largest and most frequently fractured bone of the facial skeleton, and its management sits at the interface between trauma surgery and restorative dentistry. Treatment has shifted over four decades from prolonged maxillomandibular fixation towards rigid internal fixation with miniature plates, with earlier return to function and fewer functional sequelae. This article reviews the epidemiology of mandibular fracture, the classification systems that guide treatment, and the contemporary fixation strategies that determine outcome.
Ellis and colleagues, in a review of 2,137 mandibular fractures published in Oral Surgery, Oral Medicine and Oral Pathology in 1985, reported that the mandible accounted for more than half of all facial fractures in their series. Assault, road traffic collisions, falls and sporting injuries remain the dominant mechanisms worldwide, although the relative proportions vary with geography and socioeconomic factors.
A more recent multicentre analysis reported in the Journal of Oral and Maxillofacial Surgery in 2016 found that the mean age at presentation had risen, and that falls had overtaken assault as the leading cause in patients over 60 years.
The mandible is vulnerable because of its prominence, its mobility and its ring-like structure, which concentrates force at specific weak points. The parasymphysis and the angle are the most commonly affected sites in dentate patients, while the condylar neck is the most common site in children.
The presence of teeth within the fracture line has important consequences, since it introduces communication with the oral cavity and converts the injury into a compound fracture. This distinction drives the use of antibiotic prophylaxis and influences the choice of fixation.
Fractures are classified by anatomical site, by the direction of the fracture line and by the presence of communication with the oral cavity. Angle's classification of the fracture line relative to the attachment of the masseter and medial pterygoid muscles remains clinically useful because it predicts the direction of displacement.
Displacement is determined by the pull of the muscles attached to each fragment, and favourable fractures resist displacement while unfavourable fractures do not. This mechanical assessment, rather than the fracture line alone, determines whether rigid fixation is required.
Clinical signs include malocclusion, restricted or deviated opening, step deformity in the dental arch, sublingual haematoma and altered sensation in the lower lip. A study in the British Journal of Oral and Maxillofacial Surgery in 2011 reported that altered labial sensation was present in 22 per cent of patients at presentation.
Radiographic assessment usually combines an orthopantomogram with a posteroanterior view, and computed tomography is reserved for condylar and comminuted fractures.
The airway takes priority, and a bilateral parasymphyseal fracture with posterior displacement can obstruct the pharynx and produce rapid compromise. Haemorrhage control, analgesia and antibiotic prophylaxis follow, and the patient should be assessed for concomitant cervical spine injury before the jaw is manipulated.
Closed treatment with maxillomandibular fixation remains appropriate for minimally displaced favourable fractures, for grossly comminuted fractures and for children with developing dentition. A study in the International Journal of Oral and Maxillofacial Surgery in 2012 reported satisfactory union in over 90 per cent of favourable fractures managed without open reduction.
The disadvantage is the duration of immobilisation, typically two to four weeks, with its consequences for nutrition, oral hygiene and the temporomandibular joint. Weight loss of 5 to 10 per cent during fixation is commonly reported.
Open reduction and internal fixation restores anatomical position and allows early mobilisation, which reduces the functional consequences of prolonged immobilisation.
A comparison published in the Journal of Cranio-Maxillofacial Surgery in 2014 found that patients treated with open reduction resumed normal function approximately three weeks earlier than those treated with closed techniques, without an increase in overall complication rates.
Champy described the concept of an ideal line of osteosynthesis in the late 1970s, and miniature monocortical plates placed along this line have since become the standard of care. The technique leaves the inferior alveolar nerve undisturbed and provides sufficient stability for early function.
A study in the Journal of Oral and Maxillofacial Surgery in 2013 reported an infection rate of approximately 5 per cent with single miniplate fixation of the angle, rising to 9 per cent when the plate was placed at the superior border rather than along the ideal line.
Resorbable plates composed of polylactic and polyglycolic acid copolymers avoid the need for a second operation and eliminate the risk of long-term hardware palpation. A randomised trial reported in the Journal of Cranio-Maxillofacial Surgery in 2015 found comparable stability for resorbable and titanium fixation in non-comminuted fractures.
Endoscopically assisted fixation of condylar fractures avoids a visible preauricular scar and reduces the risk of facial nerve injury. A study in the Journal of Oral and Maxillofacial Surgery in 2017 reported a transient facial nerve weakness rate of 2 per cent with the endoscopic approach compared with 8 per cent with an open approach.
Infection remains the most common complication and is associated with smoking, poor oral hygiene, delayed presentation and mobility of the fracture segments. Hardware removal is required in approximately 3 to 7 per cent of patients, most often within the first year.
Injury to the inferior alveolar nerve produces altered sensation in the lower lip and chin, and a review in the Journal of Oral Rehabilitation in 2015 reported a persistent deficit in approximately 1 per cent of fractures. Malunion and non-union are uncommon with rigid fixation but occur more frequently in atrophic edentulous mandibles.
Early mobilisation is encouraged, with soft diet, analgesia and meticulous oral hygiene. Intermaxillary elastics may be used for a short period to guide occlusion, and patients should be reviewed radiographically for plate position and union.
Plaque control is challenging in the presence of intraoral incisions and wires, and a soft powered brush such as the BrushO allows patients to clean around healing sites gently while reducing the risk of trauma to the surgical wound. Smoking cessation advice should be given at every visit, as smoking substantially increases the risk of infection and hardware failure.
Mandibular fracture management has moved decisively towards anatomically accurate open reduction with miniature plates, guided by muscular and mechanical principles rather than tradition. The choice between closed and open treatment depends on the site, the degree of displacement and the condition of the patient. With appropriate fixation, early mobilisation and meticulous follow-up, the majority of patients regain full function and normal occlusion.
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