Schumayer Sven, Sigdel Bishesh, Jarboui Mohamed Ali, Zrenner Eberhart, Bucher Volker, Straßer Torsten, Wagner Sandra
Faculty Mechanical and Medical Engineering (MME), Institute for Microsystems Technology (iMST), Furtwangen University, Furtwangen, Germany.
Institute for Ophthalmic Research, University of Tuebingen, Tuebingen, Germany.
Sci Rep. 2025 Jun 3;15(1):19389. doi: 10.1038/s41598-025-04165-3.
To see near objects clearly, the ciliary muscle shapes the human eye's crystalline lens to adjust its refractive power, a process known as accommodation. This contraction of the ciliary muscle also results in an electrical potential change. Previous work from the 1950s and 1960s reported electrical voltages in the microvolt range that were attributed to the accommodating ciliary muscle, however without clarifying the interaction between lens and muscle. Here, we present data of 12 emmetropic participants using a custom-developed scleral contact lens electrode which enables to record accommodation-dependent biopotentials of the ciliary muscle with an accuracy up to the millivolt range. Therefore, participants alternately shifted their focus from far to various near targets while the biopotentials of the ciliary muscle and the actual refractive change of the crystalline lens were recorded by a contact lens electrode and an eccentric infrared Photorefractor. In addition, the impact of confounding biopotentials such as squinting and eye movements was investigated. Our research points to a potentially new objective method of measuring accommodative change. Understanding these biopotentials could lead to the development of self-focusing visual aids as an alternative way of vision correction in presbyopes.
为了清晰地看到近处物体,睫状肌会改变人眼晶状体的形状以调整其屈光力,这一过程称为调节。睫状肌的这种收缩还会导致电位变化。20世纪50年代和60年代的先前研究报告了微伏范围内的电压,这些电压被归因于调节中的睫状肌,但没有阐明晶状体与肌肉之间的相互作用。在这里,我们展示了12名正视眼参与者的数据,使用的是定制开发的巩膜接触镜电极,该电极能够记录睫状肌与调节相关的生物电位,精度可达毫伏范围。因此,参与者交替地将焦点从远处转移到各种近处目标,同时通过接触镜电极和偏心红外验光仪记录睫状肌的生物电位和晶状体的实际屈光变化。此外,还研究了诸如眯眼和眼球运动等混杂生物电位的影响。我们的研究指向一种潜在的测量调节变化的新客观方法。了解这些生物电位可能会促成自聚焦视觉辅助设备的开发,作为老花眼视力矫正的一种替代方法。