The Experts below are selected from a list of 294 Experts worldwide ranked by ideXlab platform
G. H. Roberson - One of the best experts on this subject based on the ideXlab platform.
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CBMS - Internet Web-based teaching for Cross-Sectional Anatomy and radiological imaging
Proceedings. 11th IEEE Symposium on Computer-Based Medical Systems (Cat. No.98CB36237), 1998Co-Authors: Yao Yang Shieh, Benny C. Shaw, G. H. RobersonAbstract:In using clinical cases to teach Cross-Sectional Anatomy to first-year medical students as well as to students in their clinical rotations, it is important to carefully design the concepts that will foster an understanding of functional and structural relationships in Anatomy. In this paper, a radiological image database was developed using ICD-9 codes and diagnostic reports. The ICD-9 codes facilitated the retrieval of images that appropriately demonstrated the concepts being taught in the clinical case. Using an interactive World Wide Web interface, these images, along with digital images of traditional dissections were integrated with the clinical case. The Web interface guides the student through the case and includes a self-assessment of concepts presented in previous cases to promote active learning of Cross-Sectional Anatomy.
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Internet web-based teaching for Cross-Sectional Anatomy and radiological imaging
Proceedings of the IEEE Symposium on Computer-Based Medical Systems, 1998Co-Authors: Yao Yang Shieh, Benny C. Shaw, G. H. RobersonAbstract:In using clinical cases to teach Cross-Sectional Anatomy to first-year medical students as well as to students in their clinical rotations, it is important to carefully design the concepts that will foster an understanding of functional and structural relationships in Anatomy. In this paper, a radiological image database was developed using ICD-9 codes and diagnostic reports. The ICD-9 codes facilitated the retrieval of images that appropriately demonstrated the concepts being taught in the clinical case. Using an interactive World Wide Web interface, these images, along with digital images of traditional dissections were integrated with the clinical case. The Web interface guides the student through the case and includes a self-assessment of concepts presented in previous cases to promote active learning of Cross-Sectional Anatomy
Eric Betti - One of the best experts on this subject based on the ideXlab platform.
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Magnetic Resonance Imaging and Cross-Sectional Anatomy of the Coelomic Cavity in a Red-Eared Slider (Trachemys scripta elegans) and Yellow-Bellied Sliders (Trachemys scripta scripta)
Journal of herpetological medicine and surgery, 2012Co-Authors: Noémie M. Summa, E. Risi, Marion Fusellier, David Sanchez-migallon Guzman, Allison L. Zwingenberger, S. Madec, Christian Raphaël, Eric BettiAbstract:Abstract The aim of this study was to determine the normal coelomic structures of a healthy red-eared slider (Trachemys scripta elegans) and yellow-bellied sliders (Trachemys scripta scripta) using magnetic resonance images and gross Cross-Sectional Anatomy. Three- or six-centimeter thick, T1-weighted and T2-weighted images were obtained from three live adult red-eared (n = 1) and yellow-bellied sliders (n = 2) with a 1-Tesla superconducting magnet and a surface coil. Magnetic resonance imaging was performed in transverse, sagittal, and dorsal planes. Images of the coelomic cavity were compared to frozen, Cross-Sectional cadaveric Anatomy of the same turtles. Anatomic structures were identified and labeled. Resulting images presented excellent, detailed information of coelomic structures. The intent of this study was to develop an atlas of Cross-Sectional Anatomy and magnetic resonance appearance of the normal coelomic cavity in red-eared and yellow-bellied sliders that can be used as a reference for the ...
Yao Yang Shieh - One of the best experts on this subject based on the ideXlab platform.
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CBMS - Internet Web-based teaching for Cross-Sectional Anatomy and radiological imaging
Proceedings. 11th IEEE Symposium on Computer-Based Medical Systems (Cat. No.98CB36237), 1998Co-Authors: Yao Yang Shieh, Benny C. Shaw, G. H. RobersonAbstract:In using clinical cases to teach Cross-Sectional Anatomy to first-year medical students as well as to students in their clinical rotations, it is important to carefully design the concepts that will foster an understanding of functional and structural relationships in Anatomy. In this paper, a radiological image database was developed using ICD-9 codes and diagnostic reports. The ICD-9 codes facilitated the retrieval of images that appropriately demonstrated the concepts being taught in the clinical case. Using an interactive World Wide Web interface, these images, along with digital images of traditional dissections were integrated with the clinical case. The Web interface guides the student through the case and includes a self-assessment of concepts presented in previous cases to promote active learning of Cross-Sectional Anatomy.
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Internet web-based teaching for Cross-Sectional Anatomy and radiological imaging
Proceedings of the IEEE Symposium on Computer-Based Medical Systems, 1998Co-Authors: Yao Yang Shieh, Benny C. Shaw, G. H. RobersonAbstract:In using clinical cases to teach Cross-Sectional Anatomy to first-year medical students as well as to students in their clinical rotations, it is important to carefully design the concepts that will foster an understanding of functional and structural relationships in Anatomy. In this paper, a radiological image database was developed using ICD-9 codes and diagnostic reports. The ICD-9 codes facilitated the retrieval of images that appropriately demonstrated the concepts being taught in the clinical case. Using an interactive World Wide Web interface, these images, along with digital images of traditional dissections were integrated with the clinical case. The Web interface guides the student through the case and includes a self-assessment of concepts presented in previous cases to promote active learning of Cross-Sectional Anatomy
Allison L. Zwingenberger - One of the best experts on this subject based on the ideXlab platform.
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COMPUTED TOMOGRAPHIC AND Cross-Sectional Anatomy OF THE NORMAL PACU (COLOSSOMA MACROPONUM)
Journal of Zoo and Wildlife Medicine, 2014Co-Authors: Alaina Carr, E. Scott Weber, Christopher J. Murphy, Allison L. ZwingenbergerAbstract:Abstract: The purpose of this study was to compare and define the normal Cross-Sectional gross and computed tomographic (CT) Anatomy for a species of boney fish to better gain insight into the use of advanced diagnostic imaging for future clinical cases. The pacu (Colossoma macropomum) was used because of its widespread presence in the aquarium trade, its relatively large body size, and its importance in the research and aquaculture settings. Transverse 0.6-mm CT images of three cadaver fish were obtained and compared to corresponding frozen cross sections of the fish. Relevant anatomic structures were identified and labeled at each level; the Hounsfield unit density of major organs was established. The images presented good anatomic detail and provide a reference for future research and clinical investigation.
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Magnetic Resonance Imaging and Cross-Sectional Anatomy of the Coelomic Cavity in a Red-Eared Slider (Trachemys scripta elegans) and Yellow-Bellied Sliders (Trachemys scripta scripta)
Journal of herpetological medicine and surgery, 2012Co-Authors: Noémie M. Summa, E. Risi, Marion Fusellier, David Sanchez-migallon Guzman, Allison L. Zwingenberger, S. Madec, Christian Raphaël, Eric BettiAbstract:Abstract The aim of this study was to determine the normal coelomic structures of a healthy red-eared slider (Trachemys scripta elegans) and yellow-bellied sliders (Trachemys scripta scripta) using magnetic resonance images and gross Cross-Sectional Anatomy. Three- or six-centimeter thick, T1-weighted and T2-weighted images were obtained from three live adult red-eared (n = 1) and yellow-bellied sliders (n = 2) with a 1-Tesla superconducting magnet and a surface coil. Magnetic resonance imaging was performed in transverse, sagittal, and dorsal planes. Images of the coelomic cavity were compared to frozen, Cross-Sectional cadaveric Anatomy of the same turtles. Anatomic structures were identified and labeled. Resulting images presented excellent, detailed information of coelomic structures. The intent of this study was to develop an atlas of Cross-Sectional Anatomy and magnetic resonance appearance of the normal coelomic cavity in red-eared and yellow-bellied sliders that can be used as a reference for the ...
John O L Delancey - One of the best experts on this subject based on the ideXlab platform.
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Posterior compartment Anatomy as seen in magnetic resonance imaging and 3-dimensional reconstruction from asymptomatic nulliparas.
American Journal of Obstetrics and Gynecology, 2008Co-Authors: Christina Lewicky-gaupp, John O L DelanceyAbstract:Objective The objective of the study was to identify characteristic anatomical features of the posterior compartment using magnetic resonance (MR) Cross-Sectional Anatomy and 3-dimensional (3-D) modeling. Study Design Supine, static proton-density MR images of 20 nulliparas were analyzed. MR images were used to create models in a selected exemplar. Results The compartment's upper, mid, and lower segments are best seen in the axial plane. It is bounded inferiorly by the perineal body, ventrally by the posterior vaginal wall, and dorsally by the levator ani muscles and coccyx. In the upper portion, the compartment is bordered laterally by the uterosacral ligaments, whereas in the middle portion, there is more direct contact with the lateral levator ani muscles. In the lower portion, the contact becomes obliterated because the vagina and levator ani muscles become fused to each another and to the perineal body. Conclusion The posterior compartment has characteristic anatomic features in MR Cross-Sectional Anatomy that can be further elucidated and integrated with 3-D Anatomy.
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Posterior compartment Anatomy as seen in magnetic resonance imaging and 3-dimensional reconstruction from asymptomatic nulliparas.
American journal of obstetrics and gynecology, 2008Co-Authors: Christina Lewicky-gaupp, John O L DelanceyAbstract:The objective of the study was to identify characteristic anatomical features of the posterior compartment using magnetic resonance (MR) Cross-Sectional Anatomy and 3-dimensional (3-D) modeling. Supine, static proton-density MR images of 20 nulliparas were analyzed. MR images were used to create models in a selected exemplar. The compartment's upper, mid, and lower segments are best seen in the axial plane. It is bounded inferiorly by the perineal body, ventrally by the posterior vaginal wall, and dorsally by the levator ani muscles and coccyx. In the upper portion, the compartment is bordered laterally by the uterosacral ligaments, whereas in the middle portion, there is more direct contact with the lateral levator ani muscles. In the lower portion, the contact becomes obliterated because the vagina and levator ani muscles become fused to each another and to the perineal body. The posterior compartment has characteristic anatomic features in MR Cross-Sectional Anatomy that can be further elucidated and integrated with 3-D Anatomy.