Prominent ear deformities often result from a combination of hypertrophic conchal cartilage and an underdeveloped antihelical fold. Traditional otoplasty techniques, such as antihelical folding sutures and conchal setback maneuvers, may introduce tension and risk of relapse, leading to suboptimal aesthetic outcomes. The PILLARS CONCEPT: represents an alternative surgical approach specifically designed to address hypertrophic concha, ensuring stable and natural results.This study aimed to present the Pillars Concept as an alternative method for correcting hypertrophic conchal cartilage, highlighting its advantages over traditional techniques, and evaluating its effectiveness in maintaining long-term stability of the ear's position without relapse.A retrospective analysis was conducted on 89 patients who underwent otoplasty utilizing the Pillars Concept. The technique involves selective transection of two supporting pillars located in the superior and inferior conchal regions after partial resection of the hypertrophic concha. This releases the conchal cartilage and enables tension-free repositioning of the auricular framework.Of the 89 cases, no hypertrophic concha recurrences were noted during follow-up periods. Complications were minimal, with only two patients (2.2%) experiencing a sensation of "glued ears" following complete conchal resection. Retroauricular fullness was observed in two cases (2.2%) after conchal setback, primarily due to inadequate management of the residual cartilage length. Patient satisfaction was high, and the natural aesthetic of the auricle was consistently preserved.The Pillars Concept provides a reliable, tension-free method for addressing hypertrophic conchal cartilage in otoplasty, preserving the natural ear anatomy and ensuring long-term stability without the risk of relapse. This technique should be considered a valuable addition to the armamentarium of otoplasty procedures.
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ACS Mater Au
January 2025
Center for Advanced Materials Research, Research Institute of Sciences and Engineering, University of Sharjah, Sharjah 27272, United Arab Emirates.
Topological quantum materials hold great promise for future technological applications. Their unique electronic properties, such as protected surface states and exotic quasi-particles, offer opportunities for designing novel electronic and spintronics devices and allow quantum information processing. The origin of the interplay between various electronic orders in topological quantum materials, such as superconductivity and magnetism, remains unclear, particularly whether these electronic orders cooperate, compete, or simply coexist.
View Article and Find Full Text PDFAdv Sci (Weinh)
January 2025
State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an, 710049, P. R. China.
Micro/nanoscale 3D bioelectrodes gain increasing interest for electrophysiological recording of electroactive cells. Although 3D printing has shown promise to flexibly fabricate 3D bioelectronics compared with conventional microfabrication, relatively-low resolution limits the printed bioelectrode for high-quality signal monitoring. Here, a novel multi-material electrohydrodynamic printing (EHDP) strategy is proposed to fabricate bioelectronics with sub-microscale 3D gold pillars for in vitro electrophysiological recordings.
View Article and Find Full Text PDFBMC Psychol
January 2025
Centre for Disability and Rehabilitation Studies Department of Health Promotion and Disability, Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.
Background: The need for educational institutions to create a conducive learning environment for participation of all students in school activities is one of the pillars advocated under Goal 4 of the United Nations Sustainable Development Goals. While there are structures institutionalized to promote students' well-being, universities are faced with a myriad of challenges which can negatively impact mental health and disrupt the overall learning experiences of students. This study explored the relationship between Emotional Intelligence and Self-Esteem which have been found to influence the mental health of students.
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January 2025
University Hospital Merkur, Zagreb, Croatia.
Adequate intraoperative visualization is mandatory for implant application in pelvic ring injuries. Several fluoroscopic X-ray views are in practical use. The gold standard primary X-ray is the anteroposterior view of the pelvis.
View Article and Find Full Text PDFFacial Plast Surg
December 2024
Private Practice, Department of Otorhinolaryngology, Head and Neck Surgery, Mallorca, Spain.
Prominent ear deformities often result from a combination of hypertrophic conchal cartilage and an underdeveloped antihelical fold. Traditional otoplasty techniques, such as antihelical folding sutures and conchal setback maneuvers, may introduce tension and risk of relapse, leading to suboptimal aesthetic outcomes. The PILLARS CONCEPT: represents an alternative surgical approach specifically designed to address hypertrophic concha, ensuring stable and natural results.
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