On the basis of histological examination of normal human larynges, the authors have defined the anatomical and histological features of Reinke's space. It is sharply demarcated by dense fibrous tissue in the anterior commissure, along the vocal process of the arytenoid and beneath the free margin of the vocal cord. The upper limit is not always sharply demarcated, and on the upper surface Reinke's space varies considerably in size. It may include a half of the upper surface of the vocal cord, reaching usually to the bottom of the laryngeal ventricle and occasionally extending to include also the inferior surface of the ventricular fold. The authors suggest that the upper boundary of Reinke's space is functional. On the basis of the morphologic structure of Reinke's space a hypothesis of aetiopathogenesis of Reinke's oedema was set up. The patient's attempt to compensate the hoarseness by the use of the false vocal cords forces the fluid within Reinke's space towards the free edge of the vocal cord.
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Genome Res
December 2024
Department of Genome Sciences, University of Washington School of Medicine, Seattle, Washington 98195, USA;
A catalog of transcription factor (TF) binding sites in the genome is critical for deciphering regulatory relationships. Here, we present the culmination of the efforts of the modENCODE (model organism Encyclopedia of DNA Elements) and modERN (model organism Encyclopedia of Regulatory Networks) consortia to systematically assay TF binding events in vivo in two major model organisms, (fly) and (worm). These data sets comprise 605 TFs identifying 3.
View Article and Find Full Text PDFRev Sci Instrum
October 2024
Commonwealth Fusion Systems, Devens, Massachusetts 01434, USA.
The SPARC tokamak is a high-field, Bt0 ∼12 T, medium-sized, R0 = 1.85 m, tokamak that is presently under construction in Devens, MA, led by Commonwealth Fusion Systems. It will be used to de-risk the high-field tokamak path to a fusion power plant and demonstrate the commercial viability of fusion energy.
View Article and Find Full Text PDFRev Sci Instrum
October 2024
Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Neutron measurement is the primary tool in the SPARC tokamak for fusion power (Pfus) monitoring, research on the physics of burning plasmas, validation of the neutronics simulation workflows, and providing feedback for machine protection. A demanding target uncertainty (10% for Pfus) and coverage of a wide dynamic range (>8 orders of magnitude going up to 5 × 1019 n/s), coupled with a fast-track timeline for design and deployment, make the development of the SPARC neutron diagnostics challenging. Four subsystems are under design that exploit the high flux of direct DT and DD plasma neutrons emanating from a shielded opening in a midplane diagnostic port.
View Article and Find Full Text PDFRev Sci Instrum
August 2024
Commonwealth Fusion Systems, Devens, Massachusetts 01434, USA.
The design of a vacuum ultraviolet spectroscopy system has been performed to monitor and provide feedback for impurity control in SPARC. The spectrometer, covering a wavelength range of 10-2000 Å through a flat-field configuration with diffraction gratings, incorporates five survey lines of sight. This allows for comprehensive impurity analysis across the core and four divertor regions (inner/outer and upper/lower).
View Article and Find Full Text PDFIsr Med Assoc J
January 2024
Department of Otolaryngology-Head and Neck Surgery, Galilee Medical Center, Nahariya, Israel, Azrieli Faculty of Medicine, Bar-Ilan University, Safed, Israel.
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