Continuing reports in the literature regarding the potential of central pulse wave analysis in clinical practice and a recent consensus statement demonstrate the increasing interest in the clinical application of arterial transfer functions. A number of misconceptions, however, persist regarding their use. In spite of ongoing controversy, there are considerable published data that would permit users to assess the validity and accuracy of the technique. We provide a comprehensive review of available data, all of which appear to be clear and consistent. The technique does not permit accurate reconstruction of central waveforms from entirely non-invasively acquired data. We should move on from the misconception that what is being studied is central aortic data when transfer functions are applied non-invasively, and accept that it is radial waveform data that have been passed through a single mathematical transformation. We have a readily applicable, non-invasive and reproducible technique for acquiring radial waveform data, with or without the application of a generalized arterial transfer function. We must explore the potential of this technique in an analytical manner, and without untenable preconceptions, if we are to learn the secrets that it may yet reveal.
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http://dx.doi.org/10.1097/HJH.0b013e3282f0c9f5 | DOI Listing |
Electromagn Biol Med
January 2025
Department of Mathematics, University of Gour Banga, Malda, India.
In cardiovascular research, electromagnetic fields generated by Riga plates are utilized to study or manipulate blood flow dynamics, which is particularly crucial in developing treatments for conditions such as arterial plaque deposition and understanding blood behavior under varied flow conditions. This research predicts the flow patterns of blood enhanced with gold and maghemite nanoparticles (gold-maghemite/blood) in an electromagnetic microchannel influenced by Riga plates with a temperature gradient that decays exponentially, under sudden changes in pressure gradient. The flow modeling includes key physical influences like radiation heat emission and Darcy drag forces in porous media, with the flow mathematically represented through unsteady partial differential equations solved using the Laplace transform (LT) method.
View Article and Find Full Text PDFInt J Surg Case Rep
January 2025
Department of Vascular Surgery, Royal Perth Hospital, Perth 6000, Australia; University of Western Australia, School of Surgery, Perth 6000, Australia. Electronic address:
Introduction: We present a unique case of acute aortic occlusion secondary to infective endocarditis (IE).
Presentation Of Case: An Aboriginal Australian woman with systemic lupus erythematosus presented with fever, confusion, tachycardia, and tachypnoea and had cold, pulseless, insensate, and paralysed lower limbs. Computed tomography angiography revealed multifocal occlusion of the distal aorta and lower limb vessels.
J Appl Physiol (1985)
January 2025
Medical Physics Graduate Program, Duke University, Durham, North Carolina, United States.
Hyperpolarized Xe MRI/MRS enables quantitative mapping of function in lung airspaces, membrane tissue, and red blood cells (RBCs) within the pulmonary capillaries. The RBC signal also exhibits cardiogenic oscillations that are reduced in pre-capillary pulmonary hypertension (PH). This effect is obscured in patients with concomitant defects in transfer from airspaces to RBCs, which increase RBC oscillation amplitudes.
View Article and Find Full Text PDFTrauma Case Rep
February 2025
Department of Emergency and Critical Care Medicine, Hyogo Emergency Medical Center, 1-3-1 Wakinohamakaigandori, Chuo-ku, Kobe, Hyogo 651-0073, Japan.
Background: Hybrid emergency rooms (ERs) allow computed tomography (CT) scanning, interventional radiology, and surgery all in the same suite. Severe trauma patients with blunt thoracic aortic injury (BTAI) require rapid diagnosis and treatment. Hybrid ERs allow the potential for clinicians to implement multiple therapeutic procedures, including thoracic endovascular aortic repair (TEVAR), for these types of conditions without the need to transport the patients.
View Article and Find Full Text PDFAm J Case Rep
January 2025
Department of Neonatology, The First Division Hospital of Xinjiang Production and Construction Corps, Akesu, Xinjiang, China.
BACKGROUND Ureaplasma urealyticum (UU) is a common microorganism that has been associated with a variety of obstetric and neonatal complications, such as infertility, stillbirth, histologic chorioamnionitis, neonatal sepsis, respiratory infections, and central nervous system infections. However, it is rare for it to cause severe neonatal asphyxia. This rarity is the focus of our case report, which aims to highlight the potential severity of UU infections in newborns.
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