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Posterior fusion for odontoid fracture in an infant--case report.

A 2-year-3-month-old girl presented with a rare displaced odontoid fracture. She was managed nonoperatively by manipulation followed by 3-month extracorporeal fixation with a halo brace. However, lateral radiography revealed recurrent dislocation at the base of the odontoid process. Magnetic resonance imaging demonstrated a "synchondrotic slip." She therefore underwent posterior wiring with iliac bone grafting to prevent pseudoarthrosis. The odontoid process had fused to the axis at 4 months postoperatively. Surgical management should be considered as a treatment method for pediatric odontoid fracture because of the difficulties in maintaining long-term immobilization and confirming the union.

Child, Preschool↗

[Spinal injury in children].

We reported five cases of children with spinal injuries. Spinal injuries are rare in children, and most common from the occiput to C3 in children younger than 8 years. In our cases, two younger children had upper cervical lesions and two older children had lower lesions. These differences result from anatomical characteristics, such as special histological architecture of the growth zones in younger children. One patient had a delayed onset paraplegia without radiographic abnormality. This phenomenon seems to be one of the characteristics of the spinal injuries in children. Because of this, all children with head or neck injuries should be fully investigated. A nine-month-old child who suffered from a fracture of the odontoid process with atlantoaxial dislocation was treated by immobilization only, and the result was good. Generally, fracture of the odontoid process in young children can be treated by proper immobilization. One patient with fracture dislocation of the cervical spine died as a result of cord injury. So immediate surgical decompression is mandatory for patients with evidence of cord compression.

Adolescent↗

Traumatic atlantoaxial rotatory dislocation with odontoid fracture: case report and review.

STUDY DESIGN: A case of traumatic rotatory dislocation associated with odontoid fracture is reported. OBJECTIVES: To report a rare case of traumatic rotatory dislocation associated with odontoid fracture, and to discuss the mechanism underlying spinal instability and management. SUMMARY OF BACKGROUND DATA: This case is a cross between traumatic rotatory fixation and atlantoaxial rotatory dislocation. Classification of rotatory subluxation change after osteosynthesis of the odontoid process was undertaken. METHODS: A 24-year-old man sustained head and cervical injury after jumping. A Type 2 odontoid fracture without displacement was noted. RESULTS: Without further traumatic event, 1 month after injury, computed tomography scan showed posterior displacement of the odontoid fracture and Type 4 or B atlantoaxial rotatory luxation. After surgical fixation and reduction of the odontoid fracture, the rotatory subluxation classification changed and became Type 1 or A. Posterior C1-C2 arthrodesis was performed. The patient wore a Philadelphia cervical collar for 3 months and underwent physiotherapy. CONCLUSIONS: As the pivot of rotatory subluxation changed after odontoid process osteosynthesis, posterior C1-C2 arthrodesis was performed. The patient probably could have been treated in a single-stage procedure using posterior C1-C2 transarticular fixation with bicortical interspinous graft.

Adult↗

Microsurgical excision of a retro-odontoid disc hernia via a far-lateral approach: successful treatment of a rare cause of myelopathy: case report.

OBJECTIVE AND IMPORTANCE: Among mass lesions causing myelopathy at the craniovertebral junction, retro-odontoid intervertebral disc hernias are very rare, with only four such cases reported in the literature. CLINICAL PRESENTATION: A 77-year-old woman with this rare condition complained of motor and sensory disturbances in her extremities. Magnetic resonance imaging scans demonstrated an extradural mass lesion at the craniovertebral junction, compressing the lower medulla oblongata and the upper cervical cord posteriorly. INTERVENTION: The lesion, which was partly mucinous cartilaginous and partly fatty and fibrous, was meticulously removed via a left far-lateral approach. The lesion was not neoplastic but was determined to be composed of fibrocartilaginous tissue, consistent with disc material. Postoperatively, the patient's sensory disturbances and motor weakness improved, and magnetic resonance imaging scans demonstrated marked shrinkage of the lesion. CONCLUSION: Sagittal, T1-weighted, magnetic resonance imaging scans demonstrated a low-intensity band between the odontoid process and the body of the axis, which suggested a persistent cartilaginous band. Although upward migration of a herniated disc from the lower cervical spine and degeneration of retro-odontoid ligaments might be possible causes, a persistent cartilaginous band extending between the odontoid process and the body of the axis was considered to be the more likely origin of the retro-odontoid intervertebral disc hernia. Because the far-lateral surgical approach does not require retraction of the cervical cord and provides safe access to the lesion at the craniovertebral junction, it is a suitable surgical method for this condition.

Aged↗

[Fractures of the cervical spine].

A gentle traction is often sufficient to repose unstable lesions of the cervical spine, when a retention by means of conservative methods is not possible. Therefore a ventral, intracorporal fusion with autologous, corticospongious chip material combined with a plate fixation is an adequate solution to obtain a stable, movable blocking of the lower six cervical vertebrae. In case of a completely ruptured dorsal ligamentous apparatus, a ventral bone-chip blocking is generally insufficient. Ventral spondylodesis should be combined with a dorsal traction belt in these cases. Fresh, instable fractures of the odontoid process can be stabilized for exercise by means of two traction screws fastened from the front side. However, the best method to treat a pseudarthrosis of the odontoid process is a fusion performed from the dorsal side.

Atlanto-Occipital Joint↗

Cervicocranium and the aviator's protective helmet.

An analogy based on the likenesses of the APH-6 aviator's protective helmet and the hangman's noose has some interesting relationships to aircraft accident investigation and to the associated traumatic pathology. A superficial examination of the similarities might propose that the inferior edge of the helmet, when considered part of the continuous circle completed by the nape strap and the chin strap, forms a loop which can be likened to a hangman's noose. The analogy might be extended to the comparison of lesions made about the neck by the straps or the edge of the helmet compared with abrasions and contusions that might be associated with a rope encircling the same structures. Such a hangman's noose, when the knot is at the side of the head (subaural), produces fractures of the base of the skull tending to extend bitemporally through the basisphenoid. When the knot is anterior and beneath the chin (submental), the hangman's noose causes a fracture dislocation at the axis. Characteristically, the posterior arch is fractured and, interestingly enough, the odontoid process is not involved. Many of us anticipate that a fractured, displaced odontoid process is the prototype lesion which so precariously endangers the patient with cervical cord compromise and death similar to the hangman's fracture. More recent assessments of the mortality of the odontoid fracture suggest less than 10%.

Accidents, Aviation↗

[Traumatic odontoid synchodrotic slip in a 2-year old child].

We report a case of a two-and-a-half year-old child involved in a head-on motor vehicle accident, which is a typical mechanism of traumatic injury of the odontoid process in small children. The child was neurologically intact and the first X-ray was without signs of fractures. Two weeks later, X-ray revealed a 1 cm anterior luxation of the odontoid process. After closed reduction the child was treated conservatively with a Minerva jacket, which led to consolidation.

Accidents, Traffic↗

Posterolateral approach to the atlas and the axis.

We have developed a new surgical approach to the atlas and the axis including the odontoid process, in which the vertebral artery is transposed and an access to their lateral aspects without exposing the anterior structures of the neck is achieved. A case of successful excision of a bone tumor of the lateral mass of the atlas and a hypertrophic odontoid process by this approach is described.

Adolescent↗

[What must the family practitioner know about spinal injuries].

Spine injuries in a general practitioner's environment are mainly related to osteoporosis fractures in the elderly as well as cervical spine injuries in the elderly especially fractures of the odontoid process that need to be excluded if there is any suspicion. For osteoporotic spine fractures the invention of vertebroplasty offers a new treatment option and therefore patients should be transferred to a spine surgeon for further evaluation. The fracture of the odontoid process can end up in a non-union problem if not treated early; therefore this injury must be excluded in patients after sustaining any head contusion and complaints of neck pain afterwards.

Emergencies↗

The effect of translation of the C1-C2 on the spinal canal.

The stability of the atlantoaxial articulation depends fundamentally on the integrity of the odontoid process and the ligaments. Ligament stability mostly is maintained by two ligaments: the transverse ligament and the alar, apical ligaments. Failure of the transverse ligament can result in anterior translation of the atlas on the axis. The anteroposterior diameter of the ring of the atlas is approximately 3 cm. The spinal cord and the odontoid process are each approximately 1 cm in diameter, approximately 1/3 the diameter of the ring. According to Steel's rule of thirds, the remaining centimeter of free space allows for some degree of pathologic displacement. The current anatomic study showed that the space available for the spinal cord was limited. The sagittal diameter C1-C2 canal is 18.71 +/- 2.88 mm (excluding 10 mm thickness of the dens and 2.91 +/- 0.69 mm thickness of transverse ligament), with the spinal cord occupying 7.73 +/- 0.87 mm of the available space. Space available for spinal cord at the level of the atlas is 3.44 +/- 1.19 mm plus 1.01 +/- 0.20 mm space anterior to the cord (anterior epidural space) and 5.64 +/- 2.22 mm space posterior to the cord (posterior epidural space), which is approximately in agreement with the normal diameter by Steel's rule of thirds.

Aged↗

[Atlanto-axial dislocation--instability index and indications for surgery (author's transl)].

Thirty cases of atlanto-axial dislocation were investigated and the results are reported. The may be divided into 2 groups; (a) 15 cases of abnormalities of the odontoid process, i. e. 7 cases of os odontoideum, 7 cases of fractured odontoid, 1 cases of deformed odontoid, and (b) 15 cases with no abnormalities of the odontoid process. Neurological signs were noted in 14 cases which may be divided into the following three types, i.e. acute, recurrent, and chronic-progressive. The spinal canal diameter at the atlanto-axial level was measured in the position of flexion and extension using cervical tomography. The degree of motility thus obtained was expressed in terms of "Instability Index" (I. I.) devised in our clinic. In the group with neurological signs, the acute type showed an I. I. of 39 percent which was the highest value, and followed by 33 percent in the recurrent type. In the chronic-progressive type, the I. I. value was as low as 3.75 percent with a mean maximal diameter of 11.0 mm. Operation was performed in 16 cases. In 12 cases, posterior fusion was performed from the occipital bone to C3 or in some cases C4. In 3 cases, posterior decompression and fusion from the occipital bone to C3 were conducted. In one case, anterior decompression and fusion was performed by the transoral approach. The outcome was generally satisfactory. As a new method of posterior fusion, we have used "single bone-flap" method since 1972, that could fix the occipital bone and the cervical spines more tightly. In conclusion, the operation is indicated in the following cases; (1) when neurological signs are evident, (2) even in the abcence of neurological signs, (a) when the I. I. is high (over 20 percent), (b) even when the I. I. is low, when the maximal diameter of the canal is under 14.0 mm.

Adolescent↗

[Wallenberg's syndrome following minor neck trauma: a case associated with atlanto-axial subluxation, an anomaly of the axis, and platelet activation].

A 38-year-old man hit his forehead against a steel pipe, which made his neck hyperextended. He noticed unsteady gait and dysphagia approximately 6 hours after the accident. On the next day he was admitted. He had a Horner's syndrome, and pharyngeal and palatal weakness on the right side. There were no pyramidal tract signs. He could not balance on his right foot or gait tandemly. Sensation for cold and pin-prick was absent on his left limbs; position sense was intact. Angiography demonstrated an occlusion of the right vertebral artery at the 3rd segment. Cranial MRI demonstrated an infarction in the right lateral medulla. A radiogram demonstrated an atlanto-axial instability. There was an anomalous bone mass between the left superior articular process and the odontoid process. These abnormalities might have precipitated injury of the vertebral artery during the minor neck trauma. The plasma levels of molecular markers for coagulation and fibrinolysis were unremarkable. In contrast, beta-thromboglobulin and platelet factor 4 levels were high, suggesting activated platelet aggregation. To my knowledge, this is the first report showing evidence for platelet activation at the molecular level early in the course of vertebral artery thrombosis following a minor neck trauma.

Adult↗

[Treatment of patients with fractures of the odontoid of the C2 vertebra].

The study was undertaken to improve an approach to treating patients with fractures of the odontoid of the C2 vertebra. Forty-nine patients were admitted to hospital for fractures of the odontoid process on January 14, 1989 to January 3, 2004. Physical, target X-ray study of the cervical spine, computed tomography of the C1-2 vertebrae, magnetic resonance imaging of the neck were performed on admission. Type II odontoid fractures were found in 17 patients, Type III in 32, of them 5 patients were observed to have an axial fracture concurrent with Jefferson's fracture. Forty-one of the 49 patients were operated on. Eight patients underwent rigid external fixation with reposition using a Halo apparatus. In all cases, a Halo apparatus was used before surgery to correct dislocation and to fix the upper cervical part of the vertebral column. According to the type of a fracture, its duration, reducibility of atlas-axial dislocation, the patient's status, the following procedures were performed: 1) posterior combined spondylodesis of the C1-C2 vertebrae (Halifax braces) alone and in combination with transpharyngeal resection of the odontoid process; 2) transdental spiral fixation; 3) occipital spondylodesis; 4) isolated Halo reposition and fixation. In all the cases, the results of treatment were assessed as good. The effect of reposition and stabilization was achieved. The prehospital pain syndrome and neurological deficit virtually entirely regressed. It was concluded that active surgical policy in injuries of the upper cervical spine may yield the optimum clinical and orthopedic results that a differential approach is required to choose a method for decompression and stabilization depending on the type of an upper cervical vertebral injury.

Adolescent↗

A comparative study of two methods for obtaining the anteroposterior open mouth cervical view.

OBJECTIVE: To compare two methods of obtaining the anteroposterior (AP) open mouth view. DESIGN: Radiological evaluation of the occiput-C1/C1-C2 structures, as visualized on radiographs obtained using two different radiographic position set-ups. SETTING: The Anglo-European College of Chiropractic Clinic. PATIENTS: A total of 60 patients. Each method used on 30 patients. CRITERIA ASSESSED: Visualization of: (a) occiput-C1 joints, (b) atlantoaxial joints, (c) lateral masses C1 and (d) odontoid process. RESULTS: The visualization of the occiput-C1 joints was increased almost 100% using method 2. The atlantoaxial joints were seen in 7% more cases using method 2 and the lateral masses were seen in 10% more cases. The only structure seen more consistently using method 1 was the odontoid process, which was seen in 7% more cases using that method. CONCLUSION: This study shows that there is an easier and more consistent method of obtaining the AP open mouth view than that traditionally used in many institutions.

Atlanto-Axial Joint↗

Harris or axis ring: an aid in diagnosing low (type 3) odontoid fractures.

OBJECTIVE: To present our experience of diagnosing fractures of the odontoid process on lateral radiographs of the cervical spine that show the Harris (axis) ring. DESIGN: Retrospective study. SETTING: Teaching hospital, Belgium. SUBJECTS: 12 patients with multiple injuries, including cervical spine, 8 of them unconscious or uncooperative. INTERVENTIONS: Cross table lateral view of the cervical spine. MAIN OUTCOME MEASURE: Identification of otherwise hidden type 3 axial fractures. RESULTS: Diagnosis of low odontoid fractures in all cases. CONCLUSION: The Harris ring is disrupted in low odontoid fractures and intact in fractures of the odontoid process. Awareness of this sign will allow diagnosis of otherwise hidden axial fractures.

Adolescent↗

Structural heterogeneity within the axis: the main cause in the etiology of dens fractures. A histomorphometric analysis of 37 normal and osteoporotic autopsy cases.

Fractures of the odontoid process are potentially serious injuries; Type II and III fractures, as described by Anderson and D'Alonzo, are seen in the emergency room especially in young adolescents and individuals over 60 years of age. The etiology of these fractures is still controversial. Malunion and nonunion in both types of fractures are presumed to be due to insufficient external or internal fixation, but this theory has not been fully explained. To examine these issues, the authors expanded their prior studies of the anatomy of the axis. For histomorphometric analysis of cancellous and cortical bone, the axis was removed in 37 autopsies (26 normal and 11 osteoporotic cases) and sectioned in the sagittal plane to a thickness of 1 mm using a surface-stained block-grinding technique. The base of the dens is the region of least resistance for fractures because of its reduced trabecular bone volume, a poorer trabecular interconnection, and a cortical thickness one-third that of the axis. In all cases, trabeculae were disconnected from the trabecular lattice, and in 30%, microcallus formations were demonstrated in the base of the dens. A special filigree type of trabeculae in the base of the dens is often seen in patients with osteoporosis; microarchitectural differences of cancellous bone between the base of the dens and the other regions of the axis are also markedly increased. The authors infer from the data that the bone structure of the axis is responsible for the location, distribution, and frequency of fractures of the odontoid process in normal healthy bone and this frequency is greatly increased in individuals with osteoporosis. The deficiency of bone mass within the base also suggests a new explanation for the occurrence of nonunions, even after treatment of fractures of the base of the dens.

Adolescent↗

Atlantoaxial rotatory instability secondary to odontoid hypoplasia as a cause of acute torticollis in children: report of one case.

One patient with the chief complaint of acute torticollis was diagnosed as atlantoaxial rotatory instability secondary to hypoplasia of odontoid process. The diagnosis was confirmed by cervical radiography and computerized tomography. The attack of wryneck was first misdiagnosed as cervical muscle strain. Detailed physical examination revealed the tenderness to be located not at the sternocleidomastoid muscle. The fixed and painful rotatory deformity strongly indicated a cervical spinal lesion. Plain radiographic tests of the cervical spine revealed atlantoaxial rotational subluxation. Hypoplasia of the odontoid process, rarely reported as associated with this problem, was noted. Computerized tomographic tests further delineated the pathological alterations. Treatment with gentle reduction and traction for three days, and maintenance with neck collar for the three subsequent weeks, achieved a successful solution. No recurrence was noted after a two-year observation period.

Acute Disease↗

Primary amyloidoma of the axis and acute spinal cord compression: a case report.

BACKGROUND: Localized primary amyloidosis is a disease characterized by a single tumor and localized amyloid deposit (amyloidoma) with no evidence of generalized amyloidosis. The occurrence of an amyloidoma in the spine is rare and only three cases affecting the axis have been previously reported. We describe the case of a 79-year-old woman presenting with a mass involving the odontoid process, responsible for an acute tetraparesia. Diagnosis of local primary amyloidosis was made after surgical excision. RESULTS: Despite the critical presentation, outcome was excellent after total excision of the mass. This case can be classified as a primary localized amyloidoma. The patient did not exhibit any infection, tumor or inflammatory disease, and continued investigations failed to demonstrate other amyloid deposit after one-year follow-up. CONCLUSIONS: Amyloidoma must be discussed in presence of a tumor-like mass of the odontoid process and may be responsible, as in our case, for spinal cord compression.

Aged↗