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Spontaneous osteonecrosis of the femoral condyle: causal treatment by early core decompression.

In 16 patients with an average age of 64.6 +/- 9.8 years and sudden onset of severe knee pain, the initial stage of Ahlbäck disease (spontaneous osteonecrosis of a femoral condyle) was verified by magnetic resonance imaging (MRI) and subsequent histology. The first radiological sign of osteonecrosis (flattening of the affected femoral condyle) was present in only one case. All patients were treated surgically by extra-articular drilling into the affected femoral condyle to achieve core decompression. The knee pain disappeared immediately after surgery in all patients. Successful healing was confirmed by normalization of the bone marrow signal on MRI (on average, 35.8 months follow-up). Core decompression by extra-articular drilling into the femoral condyle can be recommended as an effective treatment in initial osteonecrosis of the knee (still radiologically invisible). However, if radiologically a flattening of the affected femoral condyle becomes apparent, progression of this disease cannot be avoided.

Aged↗

Treatment of experimental brain oedema following sudden decompression, surgical wound, and cold lesion with vasoprotective drugs and the proteinase inhibitor "Trasylol".

The study was performed on 81 cats with three models of experimental brain oedema: sudden decompression, surgical wound, and cold injury. During the experiments blood pressure, central venous pressure, and intracranial pressure were recorded. The blood-brain-barrier was tested with Evans blue solution. The gray and white matter tissue was sampled at the end of the experiment, and the water content and sodium and potassium concentrations were determined. The animals with the same experimental model were divided into three groups: untreated, treated with the vasoprotective agents, and treated with the protease inhibitor Trasylol. In the sudden decompression model after balloon deflation, white matter haemorrhages and oedema development were found in gray matter and basal nuclei. In animals treated with the vasoprotective drugs, haemorrhages were not observed, and oedematous changes were less pronounced. The Trasylol effect on oedema development was not significant in this model. In the surgical wound model, oedematous changes were observed after 24 hours following the lesion. Oedema occurred in the white matter, as in the animals with cold lesions. In both models--surgical wound and cold lesion--the beneficial effect of Trasylol was shown, while the effect of Aescorin was less evident. The results obtained seemed to testify to the usefulness of both Trasylol and vasoprotective drugs in the prevention and treatment of brain oedema in neurosurgical patients.

Animals↗

Unilateral laminotomy for bilateral decompression of lumbar spinal stenosis. Part I: Anatomical and surgical considerations.

A unilateral laminotomy for bilateral access to the lumbar spinal canal was investigated in human cadaver spine specimens to test its practicability in the treatment of spinal stenosis. Micro-surgical decompression was performed by partial resection of the ipsilateral facet, the medial portion of the laminar arch, the contralateral facet and by complete removal of the ligamentum flavum. Anatomical, radiological and morphometrical studies on 4 adult cadaver spine specimens have proved the feasibility of this unilateral approach. Complete bilateral flavectomy and partial bilateral facetectomy were the essential surgical steps for an adequate operative decompression.

Adult↗

Magnetic resonance findings in scuba diving-related spinal cord decompression sickness.

Scuba diving is associated with risk of severe decompression sickness (DCS type II), which results from rapid reduction of the environmental pressure sufficient to cause the formation into tissue or blood of inert gas bubbles previously loaded within tissues as a soluble phase. DCS type II constitutes a unique subset of ischemic insults to the central nervous system (CNS) with primarily involvement of the spinal cord. Ten patients with diving-related barotrauma underwent neurologic examination. Two of them presented progressive sensory and motor loss in the extremities at admission and were presumed affected by spinal cord DCS. Magnetic resonance imaging (MRI) demonstrated abnormalities in the white-matter tracts of the spinal cord in these patients, in each case corresponding to an area of the cord believed to be clinically involved. After a course of therapeutic recompressions, one patient was able to stand and walk a short distance, and MRI revealed a decreased extension of areas of spinal cord abnormalities. MRI has proved to be reliable in the detection of pathologic changes of spinal cord decompression sickness that were previously undetectable by other neuroimaging methods and also has proved to be useful in the follow-up during therapeutic hyperbaric recompressions.

Adolescent↗

Spinal cord myelin is vulnerable to decompression.

Spinal cord white matter is the major site of tissue damage resulting from decompression sickness (DCS or "the bends"). Damage is thought to result from bubble nucleation within the tissue. Why DCS occurs predominantly in the spinal cord and not in the brain is not known; neither is the exact pathological mechanism by which the spinal cord is damaged, nor how multiple sclerosis (MS)-like symptoms may ensue. To investigate the molecular basis of white matter damage, we subjected myelinated mouse tissues to varying durations of decompression, and then after recompression to one atmosphere, examined them for changes in myelin structure and composition. X-ray diffraction showed that the myelin period in spinal cord decreased by 4%, whereas those of optic and sciatic nerves were stable. The change in period was accompanied by a change in membrane bilayer profile--i.e., relative to control, the width of the bilayer decreased by approximately 6 A, whereas the interbilayer spaces each increased by approximately 3 A. The changes in electron density levels suggested a redistribution of matter from the interbilayer spaces into the lipid headgroup layers. By contrast with these structural changes, sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) and high-performance thin layer chromatography (HPTLC) revealed no noticeable change in myelin composition--i.e., there was no release of myelin-specific proteins or lipids. Our findings indicate that spinal cord myelin has an inherent structural vulnerability that may facilitate the targeting of this tissue during pressure changes.

Animals↗

Decompression sickness in Ireland--a review.

In the last decade there has been an increase in the incidence of decompression sickness in Ireland. The modern diver, equipped with specially developed diving equipment, is exposed to abnormal physiological conditions. This has resulted in a spectrum of medical conditions, which need to be recognised, diagnosed and treated. The department of Underwater Medicine at University College Hospital, Galway, is the only referral centre in the Republic of Ireland for patients suffering from decompression sickness. Early recognition and referral for treatment dramatically improves patient outcome. A one year's review of patients referred for treatment is presented.

Adult↗

[A rare cause of peracute vision loss: pseudotumor cerebri. Case report of course with recurrence after decompression of the optic nerve].

In primary pseudotumor cerebri (PTC) intracranial pressure is elevated by so far unknown mechanisms. There is a wide range of clinical courses. Therapy is controversial. We present a case of PTC with acute visual loss. After optic nerve sheath decompression a relapse occurred. A 30-year old female patient experienced visual loss within 48 h accompanied by headache and slight neck stiffness. Visual acuity was 1/50 in the right eye; in the left eye just hand movements and light were perceived. Fundoscopy revealed a 9 dptr. prominent optic disc bilaterally. After optic nerve sheath decompression (ONSD) she improved, but underwent a relapse after 3 months. Twenty-four-hour measurement of intracranial pressure revealed elevated values. As a consequence ventriculo-peritoneal shunting was performed, leading to prominent improvement. Primary PTC can cause acute visual loss. If conservative treatment fails, different surgical procedures should be considered.

Adult↗

[Intraoperative three-dimensional imaging to monitor selective decompression in lumbar spinal stenosis].

BACKGROUND: We are looking for a possibility to examine the amount of decompression in operations for spinal stenosis with an Iso-C(3D) fluoroscope (Siemens). METHODS: In ten patients operated on because of spinal stenosis from one side with undercutting, we performed a scan with the Iso-C(3D) fluoroscope during the operation. In five patients we additionally performed intraoperative myelography. RESULTS: In all cases we were able to make useful scans. Two times we changed our surgical procedure because of the scans. There were no complications because of the investigation with the Iso-C(3D) fluoroscope and none related to the myelography, but the myelography was dispensable. CONCLUSIONS: It is possible and useful to investigate the decompression in spinal stenosis intraoperatively with less effort.

Aged↗

[Microsurgical transoral decompression in diseases of and injuries to the cranio-cervical junction].

Besides the microsurgical ventral decompression for treatment of cervical disc prolapses, combined with an intercorporal fusion using an autologous bone graft from the iliac crest and a plate osteosynthesis, the microsurgical, transoral approach to the craniocervical junction has proven to be an effective procedure for adequate indications. Even for surgical treatment of diseases and injuries of the craniocervical junction ventral, anterolateral, lateral and dorsal approaches are applicable alone or in combination. The special anatomic and functional conditions of this region, however, obviously require that the indicational criteria for the various approaches differ from those selected for the other cervical segments. The postoperative complication risk requires that particulary critical consideration be given to the question of isolated transoral interventions. The same holds true for the question as the necessity for additional ventral stabilisation in combined dorsoventral interventions. This report is about 20 patients who underwent transoral decompression, about the indications and the procedure typical problems.

Bone Neoplasms↗

The modified outside-in suture: vertical repair of the anterior horn of the meniscus after decompression of a large meniscal cyst.

This article describes a modified suture technique designed for the vertical repair of the anterior horn of the meniscus after arthroscopic decompression of a large meniscal cyst. This procedure comprises of three steps: first, the meniscus was pierced vertically using a suture hook and a No. 0 PDS suture. Second, both ends of the No. 0 PDS on the femoral and tibial surfaces of the meniscus were pulled to the outside of the joint capsule using a spinal needle preloaded with suture material. Finally, a skin incision was made adjacent to the suture materials, and both ends were tied. We recommend this technique not only for the vertical repair of the anterior horn of the meniscus after decompression of large meniscal cyst, but also to repair a longitudinal tear of the meniscus.

Arthroscopy↗

Early decompression of the injured optic nerve reduces axonal degeneration and improves functional outcome in the adult rat.

The putative beneficial role of an early decompression of injured CNS tissue following trauma remains controversial. In this study, we approach this scientific query using a standardized injury of the optic nerve in adult rats. Adult Sprague-Dawley rats were subjected to a standardized optic nerve constriction injury by applying a loose ligature around the nerve for 5 min, 1, 6 or 24 h. All animals were sacrificed at 28 dpi. Viable axons distal to the injury were quantified using semithin sections, and regenerative fibers were studied using antisera to neurofilament and GAP43. Axonal degeneration and glial scar development were analyzed using Fluoro-Jade staining and anti-GFAP, respectively. Visual function was studied with visual evoked potentials (VEP). No significant differences were observed between 1 and 6 h of optic nerve compression. However, the number of viable axons analyzed with neurofilament and on semithin sections, decreased significantly between 6 and 24 h, paralleled by an increase in Fluoro-Jade labeled axonal debris (P < 0.001). GFAP-IR density was significantly higher (P < 0.001) in the 24 h compression group in comparison to 6 h. VEP showed preserved, but impaired visual function in animals subjected to compression up to 6 h, compared to an abolished cortical response at 24 h. Regenerative GAP43-positive sprouts were occasionally found distal to the lesion in animals subjected to compression up to 6 h, but not at 24 h. These findings suggest that early optic nerve decompression within hours after the initial trauma is beneficial for functional outcome.

Animals↗

MRI in decompression illness.

We report a case of decompression illness in which the patient developed paraparesis during scuba diving after rapid ascent. MRI of the spine revealed a focal intramedullary lesion consistent with the symptoms. The pathophysiological and radiological aspects of spinal decompression illness are discussed.

Adult↗

Neonatal ductus arteriosus aneurysm causing nerve palsies and airway compression: surgical treatment by decompression without excision.

A 4-kg male child, born at 34 weeks to a gestational diabetic mother, had a large ductus arteriosus aneurysm causing phrenic and recurrent laryngeal nerve palsies and large airway compression. The right and left atrial appendages and distal descending aorta were cannulated, allowing left heart partial or complete cardiopulmonary bypass as necessary. On bypass the ductus was ligated, decompressed, and oversewn but not excised. Examination 1 month later suggested resolution of the recurrent laryngeal palsy and echocardiography showed regression of the aneurysm. Ductus ligation and decompression was an effective surgical treatment, which is less likely to cause complications than resection.

Airway Obstruction↗

Magnetic resonance imaging criteria of successful core decompression in avascular necrosis of the hip.

To identify imaging criteria that determine the outcome of core decompression (CD) in femoral-head avascular necrosis (AVN). Radiographs and magnetic resonance imaging (MRI) of 65 hips with early stage AVN treated by core decompression between January 1990 and December 2000 for AVN were reviewed. All hips were categorized into two groups according to the result of CD using total hip arthroplasty (THA) as an end point. Hips that had no THA at follow-up were allocated to group I; those treated with a THA were allocated to group II. CD results were calculated for each group using THA as an end point. The parameters analyzed were the presence or absence of edema associated with the double-line sign on the preoperative MRI, the type of epiphyseal scar (ES) according to Jing, and the type of necrosis according to Mitchell. On follow-up, 45 hips had no THA (group I); 20 patients had a THA (group II). Patients with a radiographic crescent sign and those with edema associated with the double-line sign progressed to THA significantly more frequently. The extent of the necrosis had less discriminatory effect between the two groups. ES and necrotic tissue types had no prognostic value. In regard to the success of CD, it is important to differentiate on MRI between a double line sign plus bone marrow edema and a double-line sign only.

Adult↗

Core decompression in osteonecrosis of the femoral head: risk-factor-dependent outcome evaluation using survivorship analysis.

The results of core decompression of the femoral head in the treatment of osteonecrosis are analyzed. This study includes 94 hips in 74 patients with a follow-up time ranging between 18 months and 15 years (average 6 years). There had been no need for further surgery 2 years postoperatively in 85% of the hips with preoperative Steinberg stages 0, I and II when compared with 66% with preoperative stages III, IV and V. At 4 years postoperatively the corresponding figures are 73 compared to 55%; and 6 years postoperatively 69 compared to 49%. This difference was significant (P=0.0402). Further significant risk factors are corticosteroid administration, smoking and alcohol intake. The results of core decompression are good when the preoperative lesion is at Steinberg stage 0, I and II and the patient does not present with other risk factors. In cases with risk factors the outcome is significantly less good. The procedure is not indicated in the presence of advanced disease.

Adolescent↗

Transosseous access for decompression of an obstructed pelvic kidney.

We report a case of an obstructed pelvic kidney which was decompressed using a transosseous access route. The patient presented with obstructive uropathy and fever, necessitating decompression. Initial access was gained to the kidney by traversing the ilium, allowing subsequent retrograde placement of a double-J ureteric catheter.

Aged↗

Cerebral oedema following EVD insertion for delayed hydrocephalus after foramen magnum decompression in Chiari I malformation.

CASE REPORT: A case of Chiari I malformation is reported, in which foramen magnum decompression was followed by delayed onset of acute hydrocephalus after a week. Initial treatment of the hydrocephalus was further complicated by severe cerebral oedema. DISCUSSION: A short survey of the literature suggests that both complications are extremely uncommon. The possible mechanism of development of cerebral oedema through stretch of the cerebral vasculature before ventricular decompression is discussed. This report further adds to the list of complications following surgery for Chiari malformations.

Acute Disease↗

Indirect spinal canal decompression of vertebral burst fracture in calf model.

INTRODUCTION: An experimental study of experimental burst fractures in bovine spinal specimens was conducted to analyze the effects of transpedicular short-segment posterior fixation followed by reduction on indirect spinal canal decompression. MATERIALS AND METHODS: For this purpose, experimental burst fractures were created in 11 bovine specimens with a hydraulic materials-testing machine. The specimens were evaluated with plain radiographs and CT scans before reduction. Thereafter, they were instrumented with titanium transpedicular screws and rods (short-segment posterior fixation); and reduction was achieved which included distraction and kyphosis correction maneuvers. RESULTS: Each spinal specimen was evaluated with plain radiographs and CT scans after reduction by applying distraction and kyphosis correction maneuvers. Plain radiographic analysis showed that the kyphosis angle and segmental height values improved. Furthermore, CT scans revealed that the spinal canal diameter values improved compared with those before reduction. The differences between before and after reduction in kyphosis angle, segmental height, anterior body compression, and percentage of retropulsion were statistically significant. CONCLUSION: Short-segment posterior fixation followed by indirect spinal canal decompression led to an improvement over spinal canal retropulsion in experimental burst fractures. Furthermore, the kyphosis angle and segmental height values improved following the reduction compared with those before reduction.

Animals↗