1.Morphometrical dimensions of the sheep thoracolumbar vertebrae as seen on digitised CT images.
Mahmoud MAGEED ; Dagmar BERNER ; Henriette JULKE ; Christian HOHAUS ; Walter BREHM ; Kerstin GERLACH
Laboratory Animal Research 2013;29(3):138-147
The sheep spine is widely used as a model for preclinical research in human medicine to test new spinal implants and surgical procedures. Therefore, precise morphometric data are needed. The present study aimed to provide computed tomographic (CT) morphometry of sheep thoracolumbar spine. Five adult normal Merino sheep were included in this study. Sheep were anaesthetised and positioned in sternal recumbency. Subsequently, transverse and sagittal images were obtained using a multi-detector-row helical CT scanner. Measurements of the vertebral bodies, pedicles, intervertebral disc and transverse processes were performed with dedicated software. Vertebral bodies and the spinal canal were wider than they were deep, most obviously in the lumbar vertebrae. The intervertebral discs were as much as 57.4% thicker in the lumbar than in the thoracic spine. The pedicles were higher and longer than they were wide over the entire thoracolumbar spine. In conclusion, the generated data can serve as a CT reference for the ovine thoracolumbar spine and may be helpful in using sheep spine as a model for human spinal research.
Adult
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Humans
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Intervertebral Disc
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Lumbar Vertebrae
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Models, Animal
;
Reference Values
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Sheep
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Spinal Canal
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Spine
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Tomography, Spiral Computed
2.Is sheep lumbar spine a suitable alternative model for human spinal researches? Morphometrical comparison study.
Mahmoud MAGEED ; Dagmar BERNER ; Henriette JULKE ; Christian HOHAUS ; Walter BREHM ; Kerstin GERLACH
Laboratory Animal Research 2013;29(4):183-189
Sheep are commonly used as a model for human spinal orthopaedic research due to their similarity in morphological and biomechanical features. This study aimed to document the volumes of vertebral bodies and compare the generated results as well as morphometry of the sheep lumbar spine to human published data. For this purpose, computed tomography scans were carried out on five adult Merino sheep under general anaesthesia. Transverse 5 mm thick images were acquired from L1 to L6 using a multi-detector-row helical CT scanner. Volume measurements were performed with dedicated software. Four spinal indices and Pavlov's ratio were calculated. Thereafter, the generated data were compared to published literature on humans. The mean vertebral body volume showed an increase towards the caudal vertebrae, but there were no significant differences between the vertebral levels (P>0.05). Compared to humans, sheep vertebral body volumes were 48.6% smaller. The comparison of absolute values between both species revealed that sheep had smaller, longer and narrower vertebral bodies, thinner intervertebral discs, narrower spinal canal, longer transverse processes, shorter dorsal spinous processes and narrower, higher pedicles with more lateral angulations. The comparison of the spinal indices showed a good similarity to human in terms of the vertebral endplates and spinal canal. The results of this study may be helpful for using the sheep as a model for human orthopaedic spinal research if anatomical differences are taken into account.
Adult
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Anatomy, Comparative
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Humans*
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Intervertebral Disc
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Sheep*
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Spinal Canal
;
Spine*
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Tomography, Spiral Computed
3.Simplified Assessment of Lesion Water Uptake for Identification of Patients within 4.5 Hours of StrokeOnset: An Analysis of the MissPerfeCT Study
Peter B. SPORNS ; Marco HÖHNE ; Lennart MEYER ; Christos KROGIAS ; Volker PUETZ ; Kolja M. THIERFELDER ; Marco DUERING ; Daniel KAISER ; Sönke LANGNER ; Alex BREHM ; Lukas T. ROTKOPF ; Wolfgang G. KUNZ ; Jens FIEHLER ; Walter HEINDEL ; Peter SCHRAMM ; Heinz WIENDL ; Heike MINNERUP ; Marios Nikos PSYCHOGIOS ; André KEMMLING ; Jens MINNERUP
Journal of Stroke 2022;24(3):390-395
and Purpose Many patients with stroke cannot receive intravenous thrombolysis because the time of symptom onset is unknown. We tested whether a simple method of computed tomography (CT)-based quantification of water uptake in the ischemic tissue can identify patients with stroke onset within 4.5 hours. Methods This retrospective analysis of the MissPerfeCT study (August 2009 to November 2017) includes consecutive patients with known onset of symptoms from seven tertiary stroke centers. We developed a simplified algorithm based on region of interest (ROI) measurements to quantify water uptake of the ischemic lesion and thereby quantify time of symptom onset within and beyond 4.5 hours. Perfusion CT was used to identify ischemic brain tissue, and its density was measured in non-contrast CT and related to the density of the corresponding area of the contralateral hemisphere to quantify lesion water uptake. Results Of 263 patients, 204 (77.6%) had CT within 4.5 hours. Water uptake was significantly lower in patients with stroke onset within (6.7%; 95% confidence interval [CI], 6.0% to 7.4%) compared to beyond 4.5 hours (12.7%; 95% CI, 10.7% to 14.7%). The area under the curve for distinguishing these patient groups according to percentage water uptake was 0.744 with an optimal cut-off value of 9.5%. According to this cut-off the positive predictive value was 88.8%, sensitivity was 73.5%, specificity 67.8%, negative predictive value was 42.6%. Conclusions Ischemic stroke patients with unknown time of symptom onset can be identified as being within a timeframe of 4.5 hours using a ROI-based method to assess water uptake on admission non-contrast head CT.