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Purpose Of Review: Innovations in biomedical engineering have been instrumental in advancing skull base and head and neck surgical care. This review highlights the current state of the art of engineering in head and neck and skull base surgery and sheds light on future advances that will continue to revolutionize surgical care.
Recent Findings: Recent impacts of biomedical engineering include 3D virtual planning, custom prosthetics, reconstruction with inert polymers or metals, and biosynthesis for reconstructive surgery. 3D virtual planning has revolutionized the surgical management of oral cavity squamous cell carcinoma, with preoperative simulation leading to decreased operative time and improved patient-centered outcomes. The field of prosthetics has also benefited greatly from the customization gained with patient tailored, 3D printed prosthetics. Other facets of biomedical engineering, such as tissue engineering, have great potential to aid in complex reconstruction with limited resources.
Summary: The intimate anatomy of the head and neck leads to unique reconstructive needs that require creative solutions. As one example, 3D surgical planning is becoming the mainstay for osteocutaneous resections and reconstructions, particularly for oral cavity cancer. With patient-centered thinking, there are numerous opportunities for the use of evolving technology to improve patient outcomes.
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http://dx.doi.org/10.1097/MOO.0000000000001071 | DOI Listing |
Haematologica
September 2025
Department of Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, MD,.
Immunotherapies, including cell therapies, are effective anti-cancer agents. However, cellular product persistence can be limiting with short functional duration of activity contributing to disease relapse. A variety of manufacturing protocols are used to generate therapeutic engineered T-cells; these differ in techniques used for T-cell isolation, activation, genetic modification, and other methodology.
View Article and Find Full Text PDFHypertension
September 2025
Division of Cardiovascular Medicine, Hospital of the University of Pennsylvania, Philadelphia (C.B., H.T., J.A.C.).
Background: Aortic structural degeneration occurs with aging; however, 3-dimensional geometric remodeling has not been well characterized in large populations.
Methods: We segmented the thoracic aorta from magnetic resonance images of 56 164 UKB (UK Biobank) participants and computed tomography images of 9417 PMBB (Penn Medicine Biobank) participants. We quantified structural measurements of elongation, dilation, tortuosity, and curvature across the thoracic aorta.
Stroke
September 2025
Department of Neurology, Yale School of Medicine, New Haven, CT (L.H.S.).
Preclinical stroke research faces a critical translational gap, with animal studies failing to reliably predict clinical efficacy. To address this, the field is moving toward rigorous, multicenter preclinical randomized controlled trials (mpRCTs) that mimic phase 3 clinical trials in several key components. This collective statement, derived from experts involved in mpRCTs, outlines considerations for designing and executing such trials.
View Article and Find Full Text PDFCirc Arrhythm Electrophysiol
September 2025
Department of Congenital Heart Disease, Evelina London Children's Hospital, United Kingdom (S. Chivers, T.V., V.Z., S.M., G.M., W.R., E.R., D.F.A.L., T.G.D., O.I.M., G.K.S., J.M.S.).
Background: Fetal tachycardias can cause adverse fetal outcomes including ventricular dysfunction, hydrops, and fetal demise. Postnatally, ECG is the gold standard, but, in fetal practice, echocardiography is used most frequently to diagnose and monitor fetal arrhythmias. Noninvasive extraction of the fetal ECG (fECG) may provide additional information about the electrophysiological mechanism and monitoring of intermittent arrhythmias.
View Article and Find Full Text PDFCirc Genom Precis Med
September 2025
Clinical Pharmacology and Precision Medicine, William Harvey Research Institute, London, United Kingdom (W.J.Y., M.M.S., J.R., S.v.D., H.R.W., A.T., P.B.M.).
Background: There is a higher prevalence of heart rate corrected QT (QTc) prolongation in patients with diabetes and metabolic syndrome. QT interval genome-wide association studies have identified candidate genes for cardiac energy metabolism, and experimental studies suggest that polyunsaturated fatty acids have direct effects on ion channel function. Despite this, there has been limited study of metabolite concentration relationships with QT intervals.
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