Department of Anesthesia, Critical Care and Pain Medicine, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.
Department of Ophthalmology, UCSF School of Medicine, San Francisco, CA, USA.
Cephalalgia. 2019 Nov;39(13):1623-1634. doi: 10.1177/0333102418784750. Epub 2018 Jun 25.
To review clinical and pre-clinical evidence supporting the role of visual pathways, from the eye to the cortex, in the development of photophobia in headache disorders.
Photophobia is a poorly understood light-induced phenomenon that emerges in a variety of neurological and ophthalmological conditions. Over the years, multiple mechanisms have been proposed to explain its causes; however, scarce research and lack of systematic assessment of photophobia in patients has made the search for answers quite challenging. In the field of headaches, significant progress has been made recently on how specific visual networks contribute to photophobia features such as light-induced intensification of headache, increased perception of brightness and visual discomfort, which are frequently experienced by migraineurs. Such progress improved our understanding of the phenomenon and points to abnormal processing of light by both cone/rod-mediated image-forming and melanopsin-mediated non-image-forming visual pathways, and the consequential transfer of photic signals to multiple brain regions involved in sensory, autonomic and emotional regulation.
Photophobia phenotype is diverse, and the relative contribution of visual, trigeminal and autonomic systems may depend on the disease it emerges from. In migraine, photophobia could result from photic activation of retina-driven pathways involved in the regulation of homeostasis, making its association with headache more complex than previously thought.
回顾支持视觉通路(从眼睛到大脑皮层)在头痛障碍中畏光发展中作用的临床前和临床证据。
畏光是一种人们尚未充分了解的光诱导现象,出现在多种神经和眼科疾病中。多年来,已经提出了多种机制来解释其原因;然而,对畏光的研究甚少,也缺乏对患者的系统性评估,这使得寻找答案变得极具挑战性。在头痛领域,最近在特定视觉网络如何有助于畏光特征方面取得了重大进展,例如光诱导头痛加剧、增加对亮度和视觉不适的感知,这些特征经常在偏头痛患者中出现。这些进展增进了我们对该现象的理解,并指出了视锥/视杆介导的成像和黑视素介导的非成像视觉通路异常处理,以及光信号向涉及感觉、自主和情绪调节的多个大脑区域的传递。
畏光表型多种多样,视觉、三叉神经和自主系统的相对贡献可能取决于其发病的疾病。在偏头痛中,畏光可能是由参与稳态调节的视网膜驱动途径的光激活引起的,这使其与头痛的关联比以前认为的更为复杂。