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首页> 外文期刊>Journal of cataract and refractive surgery >Functional magnetic resonance imaging to assess neuroadaptation to multifocal intraocular lenses
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Functional magnetic resonance imaging to assess neuroadaptation to multifocal intraocular lenses

机译:功能磁共振成像以评估多灶性眼透镜的神经展开

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摘要

Purpose To evaluate the use of functional magnetic resonance imaging (MRI) to assess neuroadaptation to multifocal intraocular lenses (IOLs). Setting Faculty of Medicine, University of Coimbra, Coimbra, Portugal. Design Prospective case study. Methods Patients with bilateral diffractive IOL implantation after cataract surgery had functional MRI at postoperative intervals of 3爓eeks and 6爉onths. A nonintervention control group was included as proof of concept. Functional stimuli consisted of sinusoidal gratings with threshold contrast and a light source to induce disability glare. Subjective quality of vision and reading performance were assessed and wavefront analyses were performed. Results The study comprised 30 patients in the study group and 15 in the control group. Glare decreased the functional MRI signal measured for sinusoidal gratings initially (3爓eeks) but not at 6爉onths ( P ??04), which was confirmed by contrast detection under glare improvement ( P ??002). Patients showed increased activity of cortical areas involved in visual attention, procedural learning, effortful cognitive control, and goal-oriented behavior in the early postoperative period, which normalized at 6爉onths. There were no differences in aberrations, Strehl ratio, or modulation transfer function despite significant decreases in questionnaire symptom scores and visual acuity and reading performance improvements. The control group remained unchanged. Conclusions Neuroadaptation to multifocal IOLs took place initially through recruitment of visual attentional and procedural learning networks.燭hereafter, a form of long-term adaptation/functional plasticity occurred, leading to brain activity regularization toward a non-effort pattern. These findings, which reinforce the crucial role of higher-level brain regions in the perceptual construction of vision, were consistent with functional and questionnaire outcomes and were unrelated to optical properties.
机译:目的,用于评估使用功能磁共振成像(MRI)以评估多焦点眼透镜(IOL)的神经涂备。葡萄牙科英布拉大学医学院学院。设计前瞻性案例研究。方法在白内障手术后双侧衍射IOL植入的患者在术后MRI为3‰eeks和6‰的末期。包含非行动控制组作为概念证明。功能刺激由具有阈值对比的正弦光栅和诱导残疾眩光的光源。评估了视觉和阅读性能的主观质量,并进行了波前分析。结果该研究包括研究组30名患者,对照组15例。最初(3‰eeks),眩光降低了针对正弦光栅测量的功能MRI信号,但不是在6°的末端(p ?? 04),这通过对比度检测来证实眩光改善(p ?? 002)。患者表现出在术后早期术后期间参与视觉关注,程序学习,努力认知控制和面向目标的行为的患者的活性增加,该行为在6‰onths中标准化。尽管问卷症状分数和视力和读取性能改进,但畸形,斯特拉尔比或调制转移功能似乎没有差异。对照组保持不变。结论通过招募视觉注意力和程序学习网络的招募,最初发生了对多焦点IOL的神经展示。烛以下,发生了一种长期适应/功能可塑性的形式,导致大脑活动正规化为非努力模式。这些调查结果增强了更高级脑区在感知视觉施工中的关键作用,与功能性和问卷结果一致,与光学性质无关。

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    From the Faculty of Medicine of the University of Coimbra (Rosa Murta) the Laboratory of;

    From the Faculty of Medicine of the University of Coimbra (Rosa Murta) the Laboratory of;

    From the Faculty of Medicine of the University of Coimbra (Rosa Murta) the Laboratory of;

    From the Faculty of Medicine of the University of Coimbra (Rosa Murta) the Laboratory of;

    From the Faculty of Medicine of the University of Coimbra (Rosa Murta) the Laboratory of;

    From the Faculty of Medicine of the University of Coimbra (Rosa Murta) the Laboratory of;

    From the Faculty of Medicine of the University of Coimbra (Rosa Murta) the Laboratory of;

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  • 正文语种 eng
  • 中图分类 眼科学;
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