Leeches are hermaphroditic and hematophagous annelids. One important medical species, Hirudo medicinalis, comes from hirudiniculture of fresh water pools. Thanks to their three mandibles with some 300 teeth on their anterior muscular sucker, they easily grab to tissues and by secreting their saliva containing numerous powerful enzymes, such as hyaluronidase, collagenase and inhibitors of platelet aggregation and coagulation, like hirudin, allow blood sucking. Once they are full of blood (up to 15 g of blood), they detach themselves from their prey. Used ever since the 18th Egyptian Dynasty, leeches became famous during the first part of the XIXth century, thanks to a French physician, François Joseph Victor Broussais, known to his adversaries as the "vampire of medicine" for treating various conditions such as phlebotomy, laryngitis, ocular problems, obesity, mental disorders, etc. Overfishing, therapeutic failures and most particularly, the emergence of hygiene, brought the decline of living leeches. In 1884, an extract of leeches was obtained--hirudin and henceforth used. Nowadays, leeches are still used in microsurgery to enhance the venous circulation in finger reimplantation or skin flap transposition. Hirudin is synthesized through recombinant DNA technology and molecules such as lepirudin and desirudin are available on the market as anticoagulant.
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Biomechanical gait impairments, such as reduced paretic propulsion, are common post-stroke. Studies have used biofeedback to increase paretic propulsion and reduce propulsion asymmetry, but it is unclear if these changes impact overall gait asymmetry. There is an implicit assumption that reducing propulsion asymmetry will improve overall gait symmetry, as paretic propulsion has been related to numerous biomechanical impairments.
View Article and Find Full Text PDFScand J Trauma Resusc Emerg Med
January 2025
Faculty of Pre-Hospital Care, Royal College of Surgeons Edinburgh, Edinburgh, UK.
Background: Road traffic injury is the leading cause of death among young people globally, with motor vehicle collisions often resulting in severe injuries and entrapment. Traditional extrication techniques focus on limiting movement to prevent spinal cord injuries, but recent findings from the EXIT project challenge this approach. This paper presents updated recommendations from the Faculty of Pre-Hospital Care (FPHC) that reflect the latest evidence on extrication practices.
View Article and Find Full Text PDFBull Math Biol
January 2025
Department of Mathematics, University College London, London, UK.
In this work we analytically investigate the alignment mechanism of self-propelled ellipse-shaped cells in two spatial dimensions interacting via overlap avoidance. By considering a two-cell system and imposing certain symmetries, we obtain an analytically tractable dynamical system, which we mathematically analyse in detail. We find that for elongated cells there is a half-stable steady state corresponding to perfect alignment between the cells.
View Article and Find Full Text PDFNat Commun
January 2025
Department of Physics and Biophysics, University of San Diego, San Diego, CA, USA.
Active biological molecules present a powerful, yet largely untapped, opportunity to impart autonomous regulation of materials. Because these systems can function robustly to regulate when and where chemical reactions occur, they have the ability to bring complex, life-like behavior to synthetic materials. Here, we achieve this design feat by using functionalized circadian clock proteins, KaiB and KaiC, to engineer time-dependent crosslinking of colloids.
View Article and Find Full Text PDFCurr J Neurol
April 2024
Health Sciences North, Northern Ontario School of Medicine, Sudbury, Ontario, Canada.
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