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At least 19 recordsLinked to original sources

Atypical traumatic craniocervical junction focal spinal subdural hematoma.

Spinal subdural hematoma (SSDH) is a rare entity and post-traumatic cervical SSDH is very rare. Review of the literature revealed 8 reported cases of traumatic SSDH and only 2 were cervical. The exact mechanism and pathogenesis of SSDHs are unclear. There are still controversies about the source of bleeding and mechanisms of formation of a hematoma. Here we report a case of a unique traumatic craniocervical junction focal subdural hematoma in an 8-year-old boy and discuss the possible mechanisms of SSDHs in trauma cases.

Cervical Vertebrae↗

Spinal subdural hematoma.

Although spinal subdural hematoma is a rare condition, it has a higher incidence in persons with a bleeding diathesis and in those with a bleeding diathesis who have had a lumbar puncture. We report a case of a 65-year-old woman on oral anticoagulants presenting with atypical symptoms who developed a spinal subdural hematoma over a six-hour period. This resulted in complete paraplegia of her lower extremities with no improvement after surgical spinal cord decompression.

Female↗

Spontaneous chronic spinal subdural hematoma associated with spinal arachnoiditis and syringomyelia.

Spontaneous chronic spinal subdural hematoma is rare. We describe a case of spontaneous chronic spinal subdural hematoma associated with arachnoiditis and syringomyelia in a 76-year old woman who presented with a 14-year history of progressive myelopathy. MRI scan revealed a thoraco-lumbar subdural cystic lesion and a thoracic syrinx. The patient underwent thoracic laminectomy and decompression of the lesion, which was a subdural hematoma. A myelotomy was performed to drain the syrinx. Pathological examination revealed features consistent with chronic subdural membrane. This report attempts to elucidate the pathogenesis of chronic spinal subdural hematoma. We discuss possible etiological factors in light of the current literature and pathogenesis of both spinal subdural hematoma and syrinx formation.

Aged↗

Nontraumatic acute spinal subdural hematoma: report of five cases and review of the literature.

Acute subdural spinal hematoma occurs rarely; however, when it does occur, it may have disastrous consequences. The authors assessed the outcome of surgery for this lesion in relation to causative factors and diagnostic imaging (computerized tomography [CT], CT myelography), as well as eventual preservation of the subarachnoid space. The authors reviewed 106 cases of nontraumatic acute subdural spinal hematoma (101 published cases and five of their own) in terms of cause, diagnosis, treatment, and long-term outcome. Fifty-one patients (49%) were men and 55 (51%) were women. In 70% of patients the spinal segment involved was in the lumbar or thoracolumbar spine. In 57 cases (54%) there was a defect in the hemostatic mechanism. Spinal puncture was performed in 50 patients (47%). Late surgical treatment was performed in 59 cases (56%): outcome was good in 25 cases (42%) (in 20 of these patients preoperative neurological evaluation had shown mild deficits or paraparesis, and three patients had presented with subarachnoid hemorrhage [SAH]). The outcome was poor in 34 cases (58%; 23 patients with paraplegia and 11 with SAH). The formation of nontraumatic acute spinal subdural hematomas may result from coagulation abnormalities and iatrogenic causes such as spinal puncture. Their effect on the spinal cord and/or nerve roots may be limited to a mere compressive mechanism when the subarachnoid space is preserved and the hematoma is confined between the dura and the arachnoid. It seems likely that the theory regarding the opening of the dural compartment, verified at the cerebral level, is applicable to the spinal level too. Early surgical treatment is always indicated when the patient's neurological status progressively deteriorates. The best results can be obtained in patients who do not experience SAH. In a few selected patients in whom neurological impairment is minimal, conservative treatment is possible.

Acute Disease↗

Subacute spinal subdural hematoma associated with intracranial subdural hematoma.

We describe a subacute spinal subdural hematoma in a patient with psot-traumatic subacute intracranial subdural hematoma. CT and MRI demonstrated hematoma within the interhemispheric subdural space and at the lumbar posterior subdural space which extended from the L1 to the S2 level. The lesion showed high signal intensity on both T1 and T2 weighted images. Surgical decompression of the spinal subdural hematoma was performed. The symptoms completely resolved after surgery. Spinal subdural hematoma may be concomitant with or may occur after intracranial subdural hematoma. If a patient with intracranial subdural hematoma complains of low back pain and weakness in both legs; lumbosacral MR examination should be performed to exclude spinal subdural hematoma.

Craniocerebral Trauma↗

[Magnetic resonance tomography in epidural and subdural spinal hematoma].

Epidural and subdural spinal hematomas were previously diagnosed by myelography and computed tomography (CT). Recent reports indicate that noninvasive detection is possible with magnetic resonance imaging. We report on nine patients who were investigated by magnetic resonance imaging (MRI) prior to surgery for epidural and subdural spinal hematoma. The MR examinations were performed on 1.5-T and 1-T units. We used surface coils and employed T1-, PD- and T2-weighted spin echo sequences and a T2*-weighted gradient echo sequence. CT was available in four patients and myelography in two patients. Surgical correlation was available in all patients. The hematomas were located in the cervical spine (n = 2), thoracic spine (n = 6) and lumbar spine (n = 2). They were epidural in five patients and subdural in four. Blinded reading correctly identified all five epidural hematomas and three of the subdural hematomas; one subdural hematoma was misjudged as epidural. Peracute hematomas (< 24 h) in three patients appeared isointense or slightly hyperintense on T1-weighted images and had mixed signal intensity on T2- and T2*-weighted images. Acute hematomas (1-3 days) in four patients were also isointense on T1-weighted images but were more hypointense on T2- and T2*-weighted images. Chronic hematomas in two patients (7 days and 14 days) were hyperintense on all sequences. Differentiation between epi- and subdural hematomas required transverse T2*-weighted gradient echo sequences. Our results underline that MRI at 1 and 1.5 T is capable of identifying epidural and subdural spinal hematoma in the acute and peracute stage.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute Disease↗

Functional outcome after surgical treatment of spontaneous and nonspontaneous spinal subdural hematomas.

OBJECT: Because of the rarity of spinal subdural hematomas (SDHs), the literature offers scarce estimates of the outcome and predictive factors in patients suffering from these lesions. In addition, single-institution surgical series are still lacking. Therefore, the authors retrospectively evaluated the early and long-term functional outcomes measured in eight patients with spontaneous and nonspontaneous spinal SDHs in whom the clot had been evacuated. METHODS: The patients' charts were evaluated for origin of the lesion, risk factors, and neurological deficits at symptom onset and at 28 days after extirpation of the spinal SDH. Long-term clinical outcome (Barthel Index [BI]) was evaluated by administering a telephone questionnaire to the patient or a relative. Only one patient with a spontaneous spinal SDH was identified. Four patients were undergoing anticoagulant therapy, and three patients had undergone a previous anesthetic/diagnostic spinal procedure. Twenty-eight days postoperatively, neurological deficits improved in six of eight patients; however, in two of the six patients, the improvement did not allow the patients to become independent again. In two patients, surgery did not affect the complete sensorimotor deficits. In the long-term survivors (median 45 months) a median BI of 55 was achieved. The latency between symptom onset and surgery did not correlate with functional outcome in this series. The preoperative neurological condition and location of the hematoma correlated positively with early and long-term functional outcome. CONCLUSIONS: To the best of their knowledge, the present study is the largest single-institutional study of patients with surgically treated spinal SDHs. Despite some postoperative improvement of sensorimotor deficits in most patients, the prognosis is poor because 50% of the patients remain dependent. Their outcome was determined by the preoperative sensorimotor function and spinal level of the spinal SDH.

Adult↗

Simultaneous cranial and spinal subdural hematoma.

A 59-year-old male presented with spinal subdural hematoma (SDH) with concomitant cranial chronic SDH manifesting as mild paraparesis and numbness in both lower extremities. Magnetic resonance (MR) imaging showed simultaneous occurrence of cranial and spinal SDHs. The patient was treated conservatively because of poor medical condition and mild neurological symptoms, and recovered well within 1 month. Serial follow-up MR imaging revealed spontaneous resolution of both lesions, with signal intensity changes suggesting the degenerative process of subacute hematoma. The spinal hematoma may have migrated from the cranial lesion. Spinal SDH is a potential sequela of chronic SDH in the cranium.

Hematoma, Subdural, Intracranial↗

[Acute spinal subdural hematoma after attempted spinal anesthesia].

This is a report of a case of a subdural haematoma with resulting paraplegia after attempted spinal anaesthesia. Epidural and subdural haematomas are rare complications after central neural blockade. The complication described here was the result of an unsuccessful attempt to puncture the spinal channel. The patient was a 72-year-old woman with a fracture of the left femoral neck, which it was intended to stabilize operatively. Findings that made lumbar spinal puncture difficult were severe overweight, and lordosis and scoliosis of the lumbar spine resulting from degenerative changes. Spinal anaesthesia was suggested because the patient had eaten shortly before and because she suffered from asthma. From the aspect of haemostasis no contraindications were present, and the anaesthesist was experienced in spinal anaesthesia even under difficult anatomical conditions. Several unsuccessful attempts were made to puncture the lumbar spinal channel while the patient was lying on her right side. It was also impossible to reach the spinal channel from a median or left paramedian approach. We used atraumatic pencil-point needles (Sprotte gauge 24, 90 mm). No blood was aspirated during any of the attempts. The surgical intervention was finally performed under a general anaesthetic in view of the urgency. No significant complications occurred during the operation, and no neurological abnormalities were observed immediately after or in the next 8 h after the operation. At 12 h after the operation a paraparesis was found caudal to L3. After this had been verified by radiological and neurological tests, neurosurgical decompression was carried out as quickly as possible. During the operation a distinct subdural haematoma without any detectable source of bleeding was discovered. Even after surgical revision and evacuation of the remaining haematoma it was not possible to reverse the paraplegia, in spite of rehabilitation measures. Despite a certain fragility of the vessel and pretreatment with pentoxifylline and thromboembolic prophylaxis with low-molecular heparin starting postoperatively, it must be assumed that a vessel accompanying one of the spinal nerves was punctured, possibly, the radiculomedullary vessel of Adamkiewicz. A similar case was published in 1988 by Parker. In the present case it must be assumed that the vessel was punctured during a paramedian approach in the area of the foramen intervertebrale, as the spinal channel was definitely not entered. Although this is an extremely rare complication, we conclude that close neurological controls are essential at least during the first 24 h after surgery, even after an unsuccessful attempt at central neural blockade.

Aged↗

[A case of the spinal subdural hematoma formation following ventriculoperitoneal shunting for von Recklinghausen's disease associated with aqueductal stenosis].

Von Recklinghausen's disease associated with hydrocephalus due to non-tumoral aqueductal stenosis is rare. Furthermore the formation of subdural hematoma within the spinal canal is also a very rare complication of ventriculoperitoneal shunt. We presented a case of spinal subdural hematoma formation following ventriculoperitoneal shunting for von Recklinghausen's disease associated with aqueductal stenosis. A 10-year-old girl with von Recklinghausen's disease was referred to our hospital for gait disturbance during the previous 8 months. Magnetic resonance imaging (MRI) revealed hydrocephalus due to non-tumoral aqueductal stenosis, and ventriculoperitoneal shunt was instituted. Three months later, the patient developed lumbar pain and paraplegia. MRI revealed subdural hematoma in the lumbosacral spinal canal, and bilateral intracranial subdural hematoma were shown on computerized tomography (CT) scans. Subdural hematoma in the lumbosacral spinal canal was evacuated by laminectomy. Improvement of her neurological deficit was obtained postoperatively, and intracranial subdural hematomas disappeared spontaneously. Spinal subdural hematoma is assumed to be formed by the migratory movement of intracranial subdural hematoma under the influence of gravity. A characteristic finding of MRI is that such a subdural hematoma in the lumbosacral canal is located around the cauda equina.

Cerebral Aqueduct↗

Acute nontraumatic spinal subdural hematomas in three patients.

STUDY DESIGN: The clinical data, magnetic resonance imaging, intraoperative findings, and functional outcome were reviewed for three patients under anticoagulant therapy who experienced acute nontraumatic spinal subdural hematoma. OBJECTIVES: To draw attention to this rare complication of anticoagulant therapy and to assess the magnetic resonance findings and clinical outcome of patients with spinal subdural hematoma after surgical evacuation. SUMMARY OF BACKGROUND DATA: Among intraspinal hematomas, spinal subdural hematomas are by far the least common. Magnetic resonance findings have been demonstrated in only a few cases of spinal subdural hematomas. The timing of the operation and the anatomic location of the hematoma essentially determine the functional outcome. METHODS: Three case reports of spinal subdural hematomas in patients receiving anticoagulant therapy are presented. Particular interest was given to the clinical and magnetic resonance data, the intraoperative findings, and the functional outcome. RESULTS: The three patients each had a complete preoperative neurologic deficit. Sagittal T1- and T2-weighted magnetic resonance images of the spine proved to have high sensitivity for defining the type of bleeding and delineating the craniocaudal extension of the hematoma. Surgical evacuation was performed within 26 hours after the onset of symptoms. Intraoperative findings showed the hematoma to be confined between the dura and the arachnoid in two patients, and to be associated with rupture into the subarachnoid space in one patient. Postoperative recovery was incomplete in two patients, and did not improve in the remaining patient. CONCLUSIONS: Spinal subdural hematoma must be considered in patients under anticoagulant therapy with spontaneous signs of acute spinal cord or cauda equina compression. Magnetic resonance imaging with sagittal T1- and T2-weighted images were adequate and reliable for diagnosis of spinal subdural hematoma. On the basis of previous studies and the authors' intraoperative findings, spinal subdural hematomas could be viewed as spinal dural border hematomas. The level of preoperative neurologic deficit seemed to be critical for recovery despite prompt surgical evacuation.

Acute Disease↗

Acute clival and spinal subdural hematoma with spontaneous resolution: clinical and radiographic correlation in support of a proposed pathophysiological mechanism. Case report.

Infratentorial and spinal subdural hematomas (SDHs) from traumatic injury in the pediatric population occur with such rarity that they can present the clinician with a challenge in diagnosis and management. When such hematomas are correctly identified, clinicians must decide whether to evacuate the lesion or manage it expectantly. The authors discuss the case of a 4-year-old child who presented with a clival and spinal SDH after a fall from a fourth-story window. The clinical and radiographic findings support a possible mechanism of evolution of these lesions. There is little evidence to guide management of clival and spinal SDHs. This case supports the evaluation for a spinal SDH when a clival hematoma is diagnosed. In the setting of a good neurological examination, expectant management can be an appropriate method of treatment. Additionally, this case lends insight into the pathophysiology of spinal SDHs. Unlike its intracranial counterpart, the spinal subdural space lacks bridging veins. The mechanism of formation of spinal SDHs after trauma has been heretofore relatively unclear. The images in this case support the hypothesis that redistribution of the clival SDH to dependent areas in the spinal subdural space is a significant mechanism in the evolution of these lesions.

Child, Preschool↗

Spinal epidural hematoma following epidural anesthesia versus spontaneous spinal subdural hematoma. Two case reports.

Two cases of lumbar hemorrhage with subsequent persistent neurologic sequelae are presented and their possible causes are discussed in the context of a literature review: one patient with spontaneous spinal subdural hematoma with no trauma or lumbar puncture and one with spinal epidural hematoma associated with preceding epidural catheterization for postoperative pain relief. The subdural hematoma was associated with a thrombocytopenia of about 90,000/microliters due to intraoperative blood loss. This might have been contributory to the formation or expansion of the hematoma, but it is not convincing since a platelet count of this amount should not lead to spontaneous bleeding. Both patients received low-dose heparin, but since coagulation tests were normal, prolonged bleeding does not appear to be a likely cause, although it cannot be excluded. In conclusion, the reasons for both hematoma remain unclear. With regard to the epidural hematoma and low-dose heparinization, the possible coincidence of spontaneous lumbar hematoma and lumbar regional block should be taken into consideration.

Anesthesia, Epidural↗