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Titlebook: Syringomyelia; Current Concepts in Norihiko Tamaki (Professor and Chairman),Ulrich Ba Conference proceedings 2001 Springer Japan 2001 CSF.

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楼主: Guffaw
发表于 2025-3-26 21:12:54 | 显示全部楼层
Quantitative Analysis of Cerebrospinal Fluid Flow Dynamics in Syringomyelia Associated with Chiari Iresponds to cardiac pulsation. This report concerns the quantitative analysis of CSF flow dynamics using 2D-PC images. Since September 1996, we have obtained 35 2D-PC images each from 19 patients. We measured craniocaudal maximum CSF flow (peak velocity) and the position of peak velocity as a percen
发表于 2025-3-27 02:48:07 | 显示全部楼层
Deep Pain Loss in Syringomyelia and Other Spinal Cord Lesionsgnificance of testing deep pain sensation in patients with spinal cord lesions. Deep pain sensations evoked by squeezing superficial muscles were examined in 19 patients with syringomyelia, 50 with cervical spondylosis, 2 with Hirayama disease, and 2 patients with spinal neurinoma. Deep pain sensiti
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Some Further Thoughts on the Etiopathology of Syringomyelia and Experience with Surgical Managementremains controversial despite significant advances in all the fields related to this entity. We present here our views regarding the understanding of syringomyelia with reference to our observations in (1) the Cavalier King Charles Spaniel dog and (2) recently encountered clinical situation includin
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Ulrich Batzdorfboth theoretical and empirical perspectives. Consequently, it will be of interest to scholars of transportation economics and related fields, as well as transportation industry professionals..978-3-031-26342-2978-3-031-26340-8Series ISSN 2198-7246 Series E-ISSN 2198-7254
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Age-Related Morphological Change of the Central Canal of the Human Spinal Cord and the Mechanism of al and the syrinx, in contrast to hydromyelia. From these observations, we suggest that the central canal does not function after infancy because of its occlusion and that it is not involved in the development of syringomyelia in adult patients.
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Histological Evaluation for the Mechanism of Syrinx Formation in the Rat Experimental Model with Injce were more prominent in model 2. The size of the cavity enlarged chronologically. Syrinx formation in these experimental models indicated that the intramedullary cavity was initially caused by mechanical stress and was enhanced by circulatory disturbance with or without arachnoiditis. We conclude
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