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3D Vector Reconstruction of the Muscles of the Ventral Region of the Neck from Anatomical Sections of Korean Visible Human at the Paris Descartes Anatomy Laboratory
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作者 Abdoulaye Kanté Jean François Uhl +8 位作者 Mariam Daou Babou Ba Tata Touré Ousmane Touré Yatera Demba moumouna koné Drissa Traoré ouhoum Ongoïba Abdel Karim Koumaré 《Forensic Medicine and Anatomy Research》 2022年第1期13-26,共14页
<b><span style="font-family:Verdana;">Objective:</span></b></span><span><span><span style="font-family:""><span style="font-family:Verda... <b><span style="font-family:Verdana;">Objective:</span></b></span><span><span><span style="font-family:""><span style="font-family:Verdana;"> To carry out a 3D vector reconstruction of the muscles of the ventral region of the neck from anatomical sections of the “Korean Visible Human” for educational purposes. </span><b><span style="font-family:Verdana;">Materials and Methods:</span></b><span style="font-family:Verdana;"> The anatomical subject was a 33-year-old Korean man who died of leukemia. He was 164 cm tall and weighed 55</span></span></span></span><span><span><span style="font-family:""> </span></span></span><span style="font-family:Verdana;"><span style="font-family:Verdana;"><span style="font-family:Verdana;">kgs</span></span></span><span style="font-family:Verdana;"><span style="font-family:Verdana;"><span style="font-family:Verdana;">.</span></span></span><span><span><span style="font-family:""><span style="font-family:Verdana;"> The anatomical sections were made in 2010 after an MRI and a CT scan. A special saw (cryomacrotome) made it possible to make cuts 0.2 mm thick on the frozen body, </span><i><span style="font-family:Verdana;">i</span></i></span></span></span><span style="font-family:Verdana;"><span style="font-family:Verdana;"><i><span style="font-family:Verdana;">.</span></i></span></span><span style="font-family:Verdana;"><span style="font-family:Verdana;"><i><span style="font-family:Verdana;">e</span></i></span></span><span style="font-family:Verdana;"><span style="font-family:Verdana;"><i><span style="font-family:Verdana;">.</span></i></span></span><span><span><span style="font-family:""><span style="font-family:Verdana;"> 5960 cuts. Sections numbered 1500 to 2000 (or 500 cuts covering the neck) were used for our study. A segmentation by manual contouring of each anatomical element of the anterior neck region was done using Winsurf version 3.5 software on a laptop PC running Windows 7 equipped with an 8 gigabyte RAM. </span><b><span style="font-family:Verdana;">Results:</span></b><span style="font-family:Verdana;"> We modeled the sternocleidomastoid muscles, the supra-hyoid muscles, the infra-hyoid muscles and the muscle structures of the anterior neck region, the aero-digestive axis of the anterior neck region and the vasculo-nervous axis of the neck. This model is easily manipulated using the Acrobat 3Dpdf interface. Each item accessible in a menu can be displayed, hidden or made transparent, and 3D labels are available as well as educational menus for learning anatomy. This vector model has been integrated into the Diva3d virtual dissection table, a new educational tool used by universities and medical schools to learn anatomy. This model was also uploaded to the Sketchfab</span></span><sup><span style="font-family:Verdana;">?</span></sup></span></span><span><span><span style="font-family:Verdana;"> website and 3D printed using an ENDER</span><sup><span style="font-family:Verdana;">?</span></sup></span></span><span><span><span style="font-family:""><span style="font-family:Verdana;"> pro 3 printer. </span><b><span style="font-family:Verdana;">Conclusion:</span></b><span style="font-family:Verdana;"> This original work constitutes a remarkable educational tool for the anatomical study of the anterior neck region and can also be used as a 3D atlas for simulation purposes for training in therapeutic gestures. 展开更多
关键词 Anterior Neck Region Korean Visible Human 3D Vector Modeling Diva3d Virtual Dissection Table 3D Printing Sketchfab
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3D Vector Reconstruction of the Neck Skeleton from the Anatomical Sections of Korean Visible Human at the Anatomical Laboratory of Paris Descartes
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作者 Abdoulaye Kanté Mariam Daou +10 位作者 Jean François Uhl Vincent Delmas Babou Ba Tata Touré Ousmane Touré moumouna koné Demba Yatera Youssouf Sidibé Drissa Traoré Bréhima Coulibaly Nouhoum Ongoïba 《Forensic Medicine and Anatomy Research》 2021年第4期41-53,共13页
<b><span style="font-family:;" "="">Aim:</span></b><span><span><span style="font-family:;" "=""> To perform a vector 3D recon... <b><span style="font-family:;" "="">Aim:</span></b><span><span><span style="font-family:;" "=""> To perform a vector 3D reconstruction of the neck skeleton from the anatomical sections of the “Korean Visible Human” for educational purposes. <b>Material and Methods: </b>The anatomical subject was a 33-year-old Korean male who died of leukemia. It measured 164 cm and weighed 55</span></span></span><span><span><span style="font-family:;" "=""> </span></span></span><span><span><span style="font-family:;" "="">kgs.</span></span></span><span><span><span style="font-family:;" "=""> </span></span></span><span><span><span style="font-family:;" "="">The anatomical cuts were made in 2010 after an MRI and a CT scan. A special saw (cryomacrotome) made it possible to make cuts on the frozen body of 0.2 mm thick or 5960 slices. Sections numbered 1500 to 2000 (500 neck sections) were used for this study. Manual contouring segmentation of each anatomical element of the anterior neck area was done using Winsurf software version 3.5 on a PC. <b>Results</b>: Our vector 3D neck model includes the following: cervical vertebrae, hyoid bone, sternum manubrium and clavicles. This vector model has been integrated into the virtual dissection table</span></span></span><span><span><span style="font-family:;" "=""> </span></span></span><span><span><span style="font-family:;" "="">Diva3d, a new educational tool used by universities and medical schools to learn anatomy. This model was also put online on the Sketchfab website and printed in 3D using an ENDER 3 printer. <b>Conclusion:</b> This original work is a remarkable educational tool for the study of the skeleton of the neck and can also serve as a 3D atlas for simulation purposes for training therapeutic gestures.</span></span></span> 展开更多
关键词 Neck Skeleton Korean Visible Human 3D Vector Modeling Virtual Dissection Table Diva3d Teaching
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Anatomic Dissection of the Femoral Vein at the Bamako Anatomy Laboratory
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作者 Babou Ba Abdoulaye Kanté +6 位作者 Tata Touré moumouna koné Fousseyni Guissé Drissa Traoré Tièman Coulibaly Nouhoun Ongoiba A.K.Koumare 《Forensic Medicine and Anatomy Research》 2019年第4期76-84,共9页
Objectives: The purpose of this work was to measure the dimensions of the femoral veins, to describe the affluent and the variations of the femoral veins. Methodology: Twenty-four femoral veins of 12 fresh adult cadav... Objectives: The purpose of this work was to measure the dimensions of the femoral veins, to describe the affluent and the variations of the femoral veins. Methodology: Twenty-four femoral veins of 12 fresh adult cadavers were dissected and photographed. Results: The diameter of the superficial, deep and common femoral veins was respectively 8.75 mm;7.60 mm and 13.95 mm. The common femoral vein was 80.70 mm long. At the level of the superficial vein, the modal disposition was noted in 79.17%;as anatomical variations, it was split in 2 cases, the presence of a collateral canal in 1 case and in 2, and it received a quadricipital muscle vein. At the level of the deep femoral vein, the modal disposition was noted in 16.67%, and the anatomical variations were noted in 83.33% where it received no affluent in the femoral trine. The modal disposition was noted in 91.67% at the level of the mode of birth of the common femoral vein, in 16.67% at the level of its tributaries. The anatomical variations were noted in 8.33% in the mode of birth of the femoral vein, in 83.33% in which the common femoral vein received, in addition to the large saphenous vein, other tributaries, the most frequent of which were the quadricipital veins and the circumflex femoral veins. Conclusion: The diameter of the femoral veins is important. The main tributaries of the common femoral vein are GVS, VQ and circumflex femoral veins. The femoral variations are numerous and important to know to avoid a possible misdiagnosis in case of their thrombosis. 展开更多
关键词 Femoral Vein Common Femoral Vein Deep Femoral Vein Superficial Femoral Vein Circumflex Lateral Vein of the Thigh Circumflex Vein Medial Thigh Quadriceps Vein Large Saphenous Vein Anatomic Variation Deep Femoral Artery
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Anatomy of the Brachial Plexus:A Rare Variation in the Laboratory of Anatomy of Bamako(Mali)
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作者 Babou Ba Abdoulaye Kanté +12 位作者 Drissa Traoré Bréhima Bengaly Mariam Daou Bréhima Coulibaly Drissa Ouattara Siaka Diallo Siaka Diakité moumouna koné Tata Touré Cheickh Tidiane Diallo Ousmane Ibrahim Touré Birama Togola Nouhoum Ongoiba 《Forensic Medicine and Anatomy Research》 2019年第1期8-12,共5页
The brachial plexus (BP), established by the lap twigs of the last four cervical nerves and the first thoracic nerve, assures the driving and sensory innervation of the thoracic member. We bring back a case of rare an... The brachial plexus (BP), established by the lap twigs of the last four cervical nerves and the first thoracic nerve, assures the driving and sensory innervation of the thoracic member. We bring back a case of rare anatomical variation of the brachial plexus. It is a 34-year-old corpse dissected in the laboratory of anatomy of the Faculty of Medicine and Odontostomatology of Bamako in September 2017. The lap twig of the fourth cervical root (C4) participated in the constitution of the brachial plexus. The superior trunk was normally constituted. The average trunk was formed by the cervical roots C7 and C8 instead of only C7. And consequently the inferior trunk was constituted by the thoracic root T1. The posterior beam was only formed by the posterior branches of the superior and more average trunk. The medial beam was formed by all of the inferior trunk which did not give posterior branch for the formation of the posterior beam. The variations of the brachial plexus could entrain failures in the loco regional anesthesia of the brachial plexus. 展开更多
关键词 ANATOMY Brachial Plexus VARIATION ANESTHESIA Surgery
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Anatomical Study of MRI Optic Chiasm at the Bamako Anatomy Laboratory
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作者 Babou Ba Siaka Diakité +5 位作者 Abdoulaye Kanté Tata Touré moumouna koné Nouhoum Ongoiba Abdel Karim Koumaré Siaka Sidibé 《Forensic Medicine and Anatomy Research》 2020年第2期11-17,共7页
Roughly quadrangular, the chiasma presents many morphological variations. The optical chiasm, odd and symmetrical structure of the optical pathways, is a required passage of the axons of neurons for the visual pathway... Roughly quadrangular, the chiasma presents many morphological variations. The optical chiasm, odd and symmetrical structure of the optical pathways, is a required passage of the axons of neurons for the visual pathways. Any modification of its morphology evokes a pathological process, generally tumoral. The quality of MRI images rivals that of anatomical slices. So the MRI is essential for the study of the chiasma. The aim of this work was to study the morphometry of the optic chiasm in patients addressed for cerebral MRI to the imaging department of the university hospital of the POINT-G, during the period from July 29, to November 30, 2016. All patients who had a normal examination of the optic chiasma, numbering 15, were included in this study. In 86.66% of cases the chiasma had a quadrilateral form. Its average length was 8.73 mm and its average width was 13 mm. The average thickness was 4.13 mm. 展开更多
关键词 Optical Chiasma MRI LABORATORY ANATOMY
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Dissection of the Common Femoral Artery at the Bamako Anatomy Laboratory
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作者 Babou Ba Abdoulaye Kanté +10 位作者 Tata Touré moumouna koné Ousmane Ibrahim Touré Cheikh Tidiane Diallo Komlavi David Kouamenou Abdel-Latif Issa-Touré Gaoussou Simpara Aboubacar Sidiki Fofana Mahamadou Daou Nouhoun Ongoiba Abdel Karim Koumare 《Forensic Medicine and Anatomy Research》 2019年第4期68-75,共8页
Objectives: The purpose of this work was to determine the dimensions of CFA before the birth of the deep thigh artery, describe the mode of termination of the CFA, search for CFA collaterals, and describe the anatomic... Objectives: The purpose of this work was to determine the dimensions of CFA before the birth of the deep thigh artery, describe the mode of termination of the CFA, search for CFA collaterals, and describe the anatomical variations of the CFA. Methodology: This was a prospective study conducted at the Anatomy Laboratory of the Faculty of Medicine and Odonto-Stomatology of Bamako. CFA arteries of 12 fresh corpses of adults include 9 men and 3 women. A total of 24 CFA arteries were dissected and photographed. Results: The mean length of CFA was 50.9 ± 12.55 mm (range: 31 and 93 mm). Its average diameter was 9.12 ± 1.17 mm (range: 7 and 12 mm). In 70.83%, the CFA artery ended without any particularity. There was 29.17% anatomic variation in the CFA termination mode. The CFA divided into 3 branches (trifurcation) in 25%. The 3 branches were in 20.83%, the FS and a common core to LFCA and AQ;in 4.17%, they were the SFA, the DFA and the MFCA. In 4.17%, it divided into 4 branches which are: the SFA, the DFA, the MFCA and a common core to QA and LFCA. The CFA gave as collateral: circumflex superficial iliac artery in 22 cases (91.67%), superficial epigastric artery in 19 cases (79.17%), upper external pudendal artery in 20 cases (83.33%), and lower external pudendal artery in 14 cases (58.33%). We noted in our series 9 anatomical variations at the collateral level of the CFA or 37.5%. The CFA gave birth to the following branches: the MFCA in 4 cases or 16.67%, the LFCA in 1 case or 4.17%, the QA in 1 case or 4.17%, and a common core to the QA and LFCA in 3 cases or 12.5%. Conclusion: The length of CFA is important. The variations of CFA are frequent and important to know in clinical and surgical practice. 展开更多
关键词 ARTERY FEMORAL ANATOMY VARIATIONS
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A Rare Anomaly of the Left Renal Vein in the Laboratory of Anatomy of Bamako(Mali)
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作者 Abdoulaye Kanté Babou Ba +10 位作者 Bréhima Bengaly Mariam Daou Bréhima Coulibaly Drissa Ouattara Siaka Diakité moumouna koné Tata Touré Cheickh Tidiane Diallo Ousmane Ibrahim Touré Drissa Traoré Nouhoum Ongoiba 《Forensic Medicine and Anatomy Research》 2019年第1期31-35,共5页
Aim: The purpose of this work was to describe the left renal retro-aortic vein. Methodology: A case of left renal retro-aortic vein was discovered on a corpse of male, 45-year-old adult during the dissections to the l... Aim: The purpose of this work was to describe the left renal retro-aortic vein. Methodology: A case of left renal retro-aortic vein was discovered on a corpse of male, 45-year-old adult during the dissections to the laboratory of anatomy of the Faculty of Medicine of Bamako. The way at first was a xypho-pubic median and two side abdominal sections under costal and inguinal. The side sections under costal went of the median section to sides by following the costal edge. The inguinal side sections went of the median section to the anterior and superior iliac thorns. The abdominal wall was opened and reclined by every quoted. The small intestine and the colonist were resected with their meso. The renal pedicle was dissected on each side. The abdominal aorta and the inferior vena cava were dissected by the diaphragm up to the headland. Arteries and iliac veins were also dissected. Results: On male corpse, 45 years old, we discovered a left renal retro-aortic vein in horizontal route, and the trunk of the left renal vein was formed by the confluence of three veins at the level of the left renal hilum. The left renal vein passed almost horizontally below the left renal artery. It passed then behind the abdominal aorta to end in the inferior vena cava at the level of its left side face. The right renal vein had a normal aspect. Conclusion: The left renal retro-aortic vein is one of the variants of the anomalies of the system cellar inferior. The left renal retro-aortic vein could be responsible for renal aplasia. 展开更多
关键词 Left Renal Retro-Aortic Vein ANATOMY Retroperitoneal Surgery
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