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Joshua S Shimony

Publications and source records attributed to Joshua S Shimony.

6 recordsLinked to original sources

Correlation between preprocedural MRI findings and clinical outcomes in the treatment of chronic symptomatic vertebral compression fractures with percutaneous vertebroplasty.

OBJECTIVE: The purpose of our study was to correlate findings of prevertebroplasty MRI with outcomes in the treatment of chronic osteoporotic compression fractures. MATERIALS AND METHODS: Forty-five patients with osteoporotic spinal compression fractures of more than 1 year's duration were treated with vertebroplasty. Changes in pain and mobility were assessed by follow-up of 1-28 months. Preprocedural MR images were reviewed using the Modic criteria and were correlated with outcomes. RESULTS: Fifteen patients (33%) had marrow edema on MRI and 30 (67%) of the 45 patients did not. All 15 of the patients with edema had clinical benefit: six patients (40%) achieved complete relief and nine (60%) experienced symptom improvement. Ten patients (67%) had improvement in mobility, and the remaining five patients (33%) had no change. Of patients with no marrow edema (n = 30), five (17%) had complete resolution of pain, 19 (63%) were improved, and six (20%) were unchanged. None had worsening of their symptoms. Mobility was improved in 17 (57%) and unchanged in 10 (33%). Mobility was diminished in three patients (10%). In two cases, impaired mobility was due to causes other than spine disorders. CONCLUSION: Most (87%) of the 45 patients with compression fractures older than 1 year derived clinical benefit from vertebroplasty irrespective of MRI findings. Although 100% of patients with bone marrow edema had clinical benefit, no direct correlation was seen between symptom resolution and the presence of edema on preprocedural MRI. In our experience, absence of abnormal marrow signal does not definitively predict the outcome of vertebroplasty in chronic fractures.

Aged↗

Percutaneous vertebroplasty for malignant compression fractures with epidural involvement.

PURPOSE: To evaluate safety and effectiveness of performance of percutaneous vertebroplasty (PVP) in patients with malignant compression fractures and involvement of the epidural space. MATERIALS AND METHODS: PVP was performed in 50 patients with metastatic disease or multiple myeloma between June 1998 and April 2002. Twenty-five women (mean age, 62.3 years; range, 38-85 years) and 25 men (mean age, 63.1 years; range, 37-92 years) were included. Cases were retrospectively reviewed. Patients who had undergone cross-sectional imaging were classified into three groups. First group had no epidural involvement; second group, mild epidural involvement without contact with spinal cord or nerve roots; third group, moderate involvement and contact with spinal cord or nerve roots. Procedural safety was evaluated with review of all post-PVP complications and their treatment. Effectiveness was evaluated with follow-up phone calls for assessment of change in pain level and activity after PVP. Follow-up calls were performed at 1 day; 2 weeks; 1, 3, and 6 months; and 1 and 2 years. Differences between groups were assessed with singly ordered Kruskal-Wallis test. RESULTS: Fourteen patients were classified in the first group, 18 in the second, and 18 in the third. There were no significant differences in pain or mobility outcomes among groups. At the last follow-up call, 41 (82%) of 50 patients reported improvement in pre-PVP pain. Six (12%) reported no change, and three (6%) reported increased pain. After PVP in 26 (52%) patients, there was a period of increased mobility; in 19 (38%), no improvement in mobility occurred; and in five (10%), decreased mobility was reported. Complications included acute increased pain or new areas of pain in seven (14%) patients. None of these required surgery; four were treated with nerve root block; two, with central epidural injection; and one, with overnight intravenous steroids. CONCLUSION: PVP can be performed safely and effectively with conscious sedation in patients with malignant compression fractures and epidural involvement.

Adult↗

Differential vulnerability of anterior white matter in nondemented aging with minimal acceleration in dementia of the Alzheimer type: evidence from diffusion tensor imaging.

White matter microstructural integrity was assessed using diffusion tensor imaging (DTI) in 25 young adults, 25 nondemented older adults, and 25 age-matched older adults with dementia of the Alzheimer type (DAT). For each individual, measures of anisotropy and diffusivity were obtained from atlas-transformed images in the anterior and posterior callosum and in the frontal, parietal, temporal and occipital white matter. These data revealed age differences in anisotropy and diffusivity in all assessed regions. Age effects were greater in the anterior as opposed to the posterior corpus callosum and greater in the frontal white matter than in the temporal, parietal and occipital white matter, suggesting age-associated differences in white matter that exhibit a roughly anterior-to-posterior gradient. In contrast, individuals with early-stage dementia exhibited minimal, if any, additional change in anterior regions but did show greater deterioration of white matter in posterior lobar regions. Taken collectively, these results indicate that nondemented aging is characterized by significant changes in white matter most prominently in anterior brain regions. The dissociation between the regional effects of age and dementia status suggests that the mechanisms underlying age-associated cognitive decline are likely distinct from those underlying DAT.

Adult↗

Treatment of chronic symptomatic vertebral compression fractures with percutaneous vertebroplasty.

OBJECTIVE: Most fractures treated with percutaneous vertebroplasty are subacute and less than 1 year old. We report our experience treating chronic vertebral fractures with vertebroplasty. MATERIALS AND METHODS: Our database identified 41 patients with symptomatic fractures more than 1 year old. These patients were categorized into subgroups determined by fracture age: 12 months 1 day-24 months (n = 16) or more than 24 months 1 day (n = 25). Changes in pain and mobility for the study group were compared with those in 49 patients with fractures less than 1 year old. RESULTS: Thirty-three (80%) of the 41 patients in the study group had improvement in pain-seven (17%) had complete and 26 (63%) had partial relief. Forty-five (92%) of the 49 control group patients had improvement in pain-24 (49%) had complete and 21 (43%) had partial relief. The number of patients achieving partial or complete relief of pain was not statistically different between groups (p > 0.05), although complete relief was significantly more frequent in the control group (p = 0.002). Twenty patients (49%) in the study group versus 34 patients (69%) in the control group had improved mobility after vertebroplasty (p = 0.047). Patients with fractures 12 months 1 day-24 months old had improvement in mobility similar to that in patients in the control group (p = 0.962). Fractures more than 24 months 1 day old were associated with significantly less improvement in mobility (p = 0.006). CONCLUSION: Most patients with fractures more than 1 year old will experience clinical benefit from vertebroplasty. Complete relief of pain is more likely when less mature fractures are treated.

Adult↗

Diffusion-tensor MR imaging of gray and white matter development during normal human brain maturation.

BACKGROUND AND PURPOSE: Conventional MR imaging findings of human brain development are thought to result from decreasing water content, increasing macromolecular concentration, and myelination. We use diffusion-tensor MR imaging to test theoretical models that incorporate hypotheses regarding how these maturational processes influence water diffusion in developing gray and white matter. METHODS: Experimental data were derived from diffusion-tensor imaging of 167 participants, ages 31 gestational weeks to 11 postnatal years. An isotropic diffusion model was applied to the gray matter of the basal ganglia and thalamus. A model that assumes changes in the magnitude of diffusion while maintaining cylindrically symmetric anisotropy was applied to the white matter of the corpus callosum and internal capsule. Deviations of the diffusion tensor from the ideal model predictions, due to measurement noise, were estimated by using Monte Carlo simulations. RESULTS: Developing gray matter of the basal ganglia and developing white matter of the internal capsule and corpus callosum largely conformed to theory, with only small departures from model predictions in older children. However, data from the thalamus substantially diverged from predicted values, with progressively larger deviations from the model with increasing participant age. CONCLUSION: Changes in water diffusion during maturation of central gray and white matter structures can largely be explained by theoretical models incorporating simple assumptions regarding the influence of brain water content and myelination, although deviations from theory increase as the brain matures. Diffusion-tensor MR imaging is a powerful method for studying the process of brain development, with both scientific and clinical applications.

Basal Ganglia↗