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1.
Ann Vasc Surg ; 105: 325-333, 2024 Apr 08.
Article in English | MEDLINE | ID: mdl-38599486

ABSTRACT

BACKGROUND: Underrepresentation and undertreatment of women in surgery continues to be highly prevalent, with major barriers to improvement. The aim of the study was to review the current state of women surgeons in Poland. METHODS: Information from the various Polish databases on women surgeons in 9 medical universities in general, oncological, vascular, thoracic, and cardiac surgery was retrospectively evaluated. Demographics of residents and staff surgeons, academic ranks and leadership positions at universities, in surgical societies and on scientific journals editorial boards were analyzed. Descriptive statistics were used. RESULTS: In 2020, 61% of 3,668 graduates of Polish medical universities were women. In 5 surgical specialties, 11.9% (1,243 of 10,411) of the surgeons were women, with the lowest numbers in cardiac (5.6%), and in vascular surgery (6.4%); 40.4% of general surgery residents were women, less in vascular (18.4%) and thoracic surgery (24%), more in oncological surgery (28.7%). In 35 surgical departments of 9 universities, all department chairs were men, all full professors were men; 7% of associate professors and 16% of assistant professors were women. Rectors of all universities were men; 27% of the vice-rectors were women. In the senates and university councils, 39% and 35%, respectively, were women. Presidents, vice presidents, and secretaries of surgical societies and Editor-in-Chief of 4 surgical journals were all men. CONCLUSIONS: Polish women surgeons face major difficulties with representation in surgery, in departmental, institutional, and societal leadership, and on scientific journal editorial boards. A multifaceted approach to correct these serious inequalities is urgently needed.

2.
Article in English | MEDLINE | ID: mdl-30249771

ABSTRACT

The notochord is a conserved axial structure that in vertebrates serves as a hydrostatic scaffold for embryonic axis elongation and, later on, for proper spine assembly. It consists of a core of large fluid-filled vacuolated cells surrounded by an epithelial sheath that is encased in extracellular matrix. During morphogenesis, the vacuolated cells inflate their vacuole and arrange in a stereotypical staircase pattern. We investigated the origin of this pattern and found that it can be achieved purely by simple physical principles. We are able to model the arrangement of vacuolated cells within the zebrafish notochord using a physical model composed of silicone tubes and water-absorbing polymer beads. The biological structure and the physical model can be accurately described by the theory developed for the packing of spheres and foams in cylinders. Our experiments with physical models and numerical simulations generated several predictions on key features of notochord organization that we documented and tested experimentally in zebrafish. Altogether, our data reveal that the organization of the vertebrate notochord is governed by the density of the osmotically swelling vacuolated cells and the aspect ratio of the notochord rod. We therefore conclude that self-organization underlies morphogenesis of the vertebrate notochord.This article is part of the Theo Murphy meeting issue on 'Mechanics of development'.


Subject(s)
Embryonic Development , Notochord/embryology , Zebrafish/embryology , Animals , Cell Count , Models, Biological , Morphogenesis
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