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Biomedical subjects

H Bartkowski

Publications and source records attributed to H Bartkowski.

12 recordsLinked to original sources

Multilevel thoracic pedicle aplasia causing congenital thoracic kyphosis: case report.

OBJECTIVE AND IMPORTANCE: Congenital thoracic kyphosis is a rare cause of treatable myelopathy. Multilevel thoracic pedicle aplasia as a cause of this deformity has not been previously reported in the literature. We report a case and describe the surgical management and outcome. CLINICAL PRESENTATION: A 14-year-old boy presented to us with a 4-month history of back pain and slowly progressive spastic paraparesis. Radiographic studies revealed thoracic kyphosis and bilateral aplasia of the pedicles of T4-T8. INTERVENTION: The patient underwent surgical treatment via a posterior approach for decompression of T4-T8, followed by arthrodesis from T2 to T12, using a hook claw construct with multiple points of fixation and autologous bone grafting. CONCLUSION: Congenital vertebral anomalies may be clinically occult, and delayed presentation may occur in adolescence or adulthood. Aplasia of multiple thoracic pedicles can produce kyphotic deformities with neurological compromise. A posterior approach with multiple points of segmental instrumentation can be effective in treating kyphotic deformities that are flexible and of moderate severity (<75 degrees).

Adolescent↗

Postconcussive symptoms in children with mild closed head injuries.

OBJECTIVE: To examine the incidence and neuropsychological, behavioral, and neuroimaging correlates of postconcussive symptoms (PCS) in children with mild closed head injuries (CHI). DESIGN: 26 Children with mild CHI and 8 of their uninjured siblings, from 8 to 15 years old, were recruited prospectively and assessed at baseline (ie, within 7 days of injury) and at 3 months postinjury. Parents rated PCS, motivation and affective lability, and behavioral adjustment. Baseline ratings assessed premorbid functioning retrospectively, and follow-up ratings assessed postinjury status. On both occasions, children completed neuropsychological testing, and those with mild CHI also underwent magnetic resonance imaging (MRI). RESULTS: Children with mild CHI did not differ from siblings in baseline ratings of premorbid PCS but displayed higher ratings on several PCS at 3 months postinjury. Thirty-five percent of children with mild CHI showed increases in PCS, compared with baseline premorbid ratings, but none of the siblings did so. Children with mild CHI whose PCS increased from premorbid levels showed poorer neuropsychological functioning at baseline than did children whose PCS did not increase, although the differences had partially resolved by 3 months. They also displayed decreased motivation over time. Their behavioral adjustment was poorer and they had smaller white matter volumes on MRI, but the latter differences were present at baseline and did not change over time, suggesting that they existed prior to the injury. CONCLUSION: Postinjury increases in PCS occur in a sizable minority of children with mild CHI and more often than among uninjured siblings. Increases in PCS following mild CHI are associated with premorbid neurological and psychosocial vulnerability, but also with postinjury decrements in neuropsychological and neurobehavioral functioning.

Adaptation, Psychological↗

Pediatric atlantoaxial instability: management with screw fixation.

Sixteen pediatric patients (age range 3-15 years; mean 9.4 years) with atlantoaxial instability underwent screw fixation at Columbus Children's Hospital between 1992 and 1998. Three patients with type II odontoid fractures underwent odontoid screw fixation. The remaining group of 13 patients had posterior C1-2 transarticular screw fixation and Sonntag C1-2 fusion. The group included 3 patients with rotatory C1-2 fixation, 4 patients with os odontoideum, 4 patients with congenital atlantoaxial instability and 2 patients with traumatic C1-2 instability. Postoperatively, all patients were placed in a Miami-J collar only. At 3 months follow-up, all patients achieved fusion. Bony fusion across the fracture line was clearly evident in patients with odontoid screws. The only complications in this series were a transient swallowing difficulty that resolved spontaneously in 2 weeks, and another patient's C1-2 fusion had extended to C2-3 at 9 months follow-up. This study demonstrates that children at 3 years of age and older, who sustain a type II odontoid fracture with an intact transverse ligament, can be safely managed with odontoid screws if the fracture is less than 4 weeks old. Posterior C1-2 transarticular screw fixation can be done safely and results in a high fusion rate in children older than 4 years of age. The technical difficulties of screw fixation in children are discussed.

Adolescent↗

Cerebellar infarction from a traumatic vertebral artery dissection in a child.

Infarction due to vertebral dissection is a rarely reported event in children. We describe the clinical presentation, radiological findings and surgical treatment of a child with cerebellar infarction resulting from a traumatic vertebral artery dissection. Review of the literature on stroke due to a vertebral artery dissection in the pediatric population shows that trauma is a common preceding event. Although the most common site of traumatic vertebral artery dissection is at C1-2 level, our case illustrates that the vertebral artery dissection may also involve the lower cervical segment. We emphasize that vertebral artery dissection should be considered in a child with acute symptoms and signs of posterior circulation ischemia and that MRI and MR angiography may be helpful in the diagnosis of infarction and vertebral artery dissection.

Acute Disease↗

The specific NMDA receptor antagonist AP-7 attenuates focal ischemic brain injury.

Pharmacologic blockade of excitatory amino acid receptors, especially the N-methyl-D-aspartate-preferring subclass of glutamate receptors, has been shown to reduce neuronal damage in models of global cerebral ischemia followed by reperfusion. The pharmacologic blockade at the NMDA receptor attenuates infarct size following permanent focal vascular occlusion in brain. Functional recovery is improved as well. These effects were seen with treatment begun 15 min following the stroke.

2-Amino-5-phosphonovalerate↗

Traumatic intracerebral hematomas: timing of appearance and indications for operative removal.

Immediate and delayed traumatic intracerebral hematomas (ICH) can produce devastating secondary brain damage after severe head injury. The relationship between the initial injury and eventual occurrence, size, and time of appearance of such hematomas is not well understood, but has great importance since delayed appearance may necessitate delayed surgical decompression of developing lesions not present on early CT scans. We reviewed the records of 35 consecutive patients with operated post-traumatic ICH to document when these lesions appeared on CT, what were the indications for surgery, and what was eventual outcome. Time between injury and ICH appearance was categorized as immediate (0-3 hours), intermediate (3-6), delayed (6-24) or very delayed (later than 24 hours). ICH appearance was immediate in 20%, intermediate in 6%, delayed in 29%, and very delayed in 46%. Half of the patients were not comatose at the time of admission (GCS greater than or equal to 8). Hematoma removal was prompted by clinical deterioration or failure to improve in half the patients and by uncontrolled intracranial hypertension in the other half. Half the patients died, generally those in traumatic coma immediately after injury although advanced age also was associated with poor outcome. Only about one quarter of patients who require surgical removal of ICH can be shown to have their lesions soon after injury. Most operable intraparenchymal clots develop after initial CT scanning and trauma surgeons must be prepared to recognize and treat this delayed complication of brain injury. Even with aggressive management, ICH contribute significantly to poor outcome and improved treatment must be sought.

Adolescent↗

Is computed tomographic scanning necessary in patients with tentorial herniation? Results of immediate surgical exploration without computed tomography in 100 patients.

Computed tomographic (CT) scans are performed on virtually all patients with severe head injury at the time of admission. Because of the time involved in obtaining these studies, the evacuation of significant intracranial mass lesions is delayed. To avoid such delays, the authors performed burr-hole exploration for the diagnosis of intracranial hematomas before CT scans were obtained in 100 consecutive head-injured patients with clinical signs of tentorial herniation or upper brain stem dysfunction upon admission to the emergency room. Patients in whom a hematoma was discovered had a craniotomy for evacuation of the clot; those in whom the exploration was negative had a CT brain scan immediately after operation. Burr-hole exploration revealed extracerebral mass lesions in 56 patients. In 38 patients, the exploration was negative, and postoperative CT scanning showed no significant hematoma. Of 6 patients in whom the CT scan demonstrated extraaxial hematomas requiring surgical evacuation, 4 had subdural hematomas that were missed because the exploration was incomplete; 1 patient had an epidural hematoma and 1 had a subdural hematoma contralateral to a craniotomy on the side of a positive initial burr-hole exploration. Our results indicate that the relatively small subgroup of head-injured patients with early tentorial herniation or upper brain stem compression have a high incidence of immediate extraaxial hematomas and a low incidence of intracerebral hematomas. This is particularly true of patients over 30 years of age and those who suffer low speed trauma, such as falls and vehicle-pedestrian accidents.

Adult↗

Rat middle cerebral artery occlusion: evaluation of the model and development of a neurologic examination.

We have examined the incidence and size of infarction after occlusion of different portions of the rat middle cerebral artery (MCA) in order to define the reliability and predictability of this model of brain ischemia. We developed a neurologic examination and have correlated changes in neurologic status with the size and location of areas of infarction. The MCA was surgically occluded at different sites in six groups of normal rats. After 24 hr, rats were evaluated for the extent of neurologic deficits and graded as having severe, moderate, or no deficit using a new examination developed for this model. After rats were sacrificed the incidence of infarction was determined at histologic examination. In a subset of rats, the size of the area of infarction was measured as a percent of the area of a standard coronal section. Focal (1-2 mm) occlusion of the MCA at its origin, at the olfactory tract, or lateral to the inferior cerebral vein produced infarction in 13%, 67%, and 0% of rats, respectively (N = 38) and produced variable neurologic deficits. However, more extensive (3 or 6 mm) occlusion of the MCA beginning proximal to the olfactory tract--thus isolating lenticulostriate end-arteries from the proximal and distal supply--produced infarctions of uniform size, location, and with severe neurologic deficit (Grade 2) in 100% of rats (N = 17). Neurologic deficit correlated significantly with the size of the infarcted area (Grade 2, N = 17, 28 +/- 5% infarction; Grade 1, N = 5, 19 +/- 5%; Grade 0, N = 3, 10 +/- 2%; p less than 0.05). We have characterized precise anatomical sites of the MCA that when surgically occluded reliably produce uniform cerebral infarction in rats, and have developed a neurologic grading system that can be used to evaluate the effects of cerebral ischemia rapidly and accurately. The model will be useful for experimental assessment of new therapies for irreversible cerebral ischemia.

Animals↗