PubMed چکیده/رکورد

Responsible integration of artificial intelligence in clinical care: An American Association of Orthodontists position paper.

استودیوی صوتی مقاله

پخش حرفه‌ای فارسی و انگلیسی

در حال بررسی نسخه‌های صوتی ذخیره‌شده…

صوت تولیدشده با هوش مصنوعی است. برای کاربرد علمی یا درمانی، متن و منبع اصلی را بررسی کنید.
خواندن هوشمند فارسی و انگلیسی در حال آماده‌سازی صداهای مرورگر…
تنظیم صدای طبیعی و سرعت

صداهایی که در نامشان «Natural»، «Neural» یا «Online» دیده می‌شود معمولاً طبیعی‌ترند. انتخاب صدا به صداهای نصب‌شده در ویندوز و مرورگر شما بستگی دارد.

چکیده اصلی

This paper, which is adapted for publication and differs slightly from the original version distributed to American Association of Orthodontists (AAO) members in January 2026, is authored by the AAO Task Force on Artificial Intelligence in Orthodontics, and provides professional guidance for the responsible development, implementation, and oversight of artificial intelligence (AI) technologies in orthodontic clinical care. Although not regulatory, it establishes a framework to support ethical adoption, patient safety, and professional accountability in the integration of AI systems. The objectives of this paper are to preserve professional authority, promote transparency in AI development, protect patient safety, and establish a principles-based framework. These objectives will be guided through the following 6 core principles: (1) AI governance and the human-in-command, (2) regulatory alignment and risk-based oversight, (3) trustworthiness and transparency across the lifecycle, (4) patient autonomy, (5) education and clinical AI competency, and (6) operational integration and data privacy. The seamless integration of AI into orthodontic and dental care positions the orthodontist not only as the final decision-maker in the use of AI for patient care but also as the responsible party. Through transparency and a clear understanding of the underlying algorithms and learning models, orthodontists can deliver enhanced care that thoughtfully integrates technological innovation with traditional biomechanical principles without compromising patient safety, quality of care, or autonomy.

متن کامل اصلی

متن در JumpToDate ذخیره نشده است.

برای بررسی دسترسی کتابخانه‌ای یا خرید، رکورد اصلی را باز کنید.

رفتن به منبع اصلی
در همین زیرشاخه

مقاله‌های مرتبط

PubMed2026

Torque expression in directly printed and thermoformed clear aligners: a controlled in vitro biomechanical comparison of power ridge effects.

BACKGROUND: Torque control of anterior teeth remains a major challenge in clear aligner therapy. Power ridges have been introduced to improve buccolingual root control; however, their biomechanical performance in directly printed aligners remains insufficiently investigated. The aim of this study was to compare the torque efficiency of power ridges in thermoformed and directly printed aligners. METHODOLOGY: A controlled in-vitro study …

PubMed2026

Predicting orthodontic appointment adherence in adolescents and parents using an extended behavioral model.

BACKGROUND: Poor adherence in orthodontic care is a complex issue involving both children and their parents. The study aimed to expand the theory of planned behavior (TPB) by integrating sense of coherence (SOC) to predict appointment attendance in adolescent orthodontic patients. MATERIALS AND METHODS: This prospective cohort study recruited adolescents from the University of Alberta Graduate Orthodontic Clinic. Baseline questionnaire…

PubMed2026

Surgical and orthodontic management of class III malocclusion in monozygotic twins using bilateral sagittal split osteotomy.

This case report discusses the genetic influence and treatment of class III malocclusion in identical twin sisters, in their early 20s, who presented with mandibular prognathism. Both exhibited concave profiles with hypodivergent growth patterns, but Sister A had a more pronounced concavity. Diagnosis revealed skeletal class III malocclusion with mandibular prognathism and negative overjet (9 mm in Sister A, 6 mm in Sister B). Treatmen…

PubMed2026

H3K18la in periodontal ligament fibroblasts regulates immune niches and alveolar bone remodeling under mechanical loads.

The metabolism and remodeling of alveolar bone are highly active, which dynamically respond to mechanical force. However, the mechanism of how alveolar bone responds to mechanical force remains elusive. Orthodontics is essentially a physiological process of mechanical force-driven alveolar bone remodeling. Here, we demonstrated that orthodontic tension promoted the expression of glycolysis-related genes in periodontal ligament (PDL) fi…