Constable Paul A, Skuse David H, Thompson Dorothy A, Lee Irene O
College of Nursing and Health Sciences, Caring Futures Institute, Flinders University, Adelaide, Australia.
Behavioural and Brain Sciences Unit, Population Policy and Practice Programme, UCL Great Ormond Street Institute of Child Health, University College London, London, UK.
Doc Ophthalmol. 2025 Feb;150(1):25-32. doi: 10.1007/s10633-024-10000-3. Epub 2024 Dec 15.
To explore changes in the electroretinogram (ERG) following methylphenidate use in attention-deficit/hyperactivity disorder (ADHD).
Light adapted ERGs were recorded in five individuals (3 male and 2 female, age range 13.6-21.8 years) with a diagnosis of ADHD. Six flash strengths ranging from 71 to 446 Td.s were qualitatively evaluated following a minimum of 24 h without any medication and from 2 to 6 h following the individuals' standard slow-release (XL) methylphenidate dose that ranged from 18 to 60 mg.
Of the six flash strengths, the 178 Td.s strength revealed changes in four of the five participants with a median 27.4% increase in b-wave amplitude. For three individuals there was an increase in the a-wave amplitude and for two of the same individuals there was also a noticeable pronouncement of the oscillatory potentials. The a-wave amplitude showed a greatest median increase at the 446 Td.s flash strength of 25.8%. One individual - on the highest dose (60 mg) exhibited no morphologically distinct changes in the ERG. No differences in the time to peaks of the a- and b-wave were observed for any individual.
The a- and b-wave amplitudes of the light adapted ERG could provide insights into the effect of methylphenidate in ADHD.
探讨注意力缺陷多动障碍(ADHD)患者使用哌甲酯后视网膜电图(ERG)的变化。
对5名诊断为ADHD的个体(3名男性和2名女性,年龄范围13.6 - 21.8岁)记录明适应ERG。在至少24小时未服用任何药物后,以及在个体服用18至60毫克标准缓释(XL)哌甲酯剂量后的2至6小时,对6种强度范围为71至446 Td.s的闪光进行定性评估。
在6种闪光强度中,178 Td.s强度显示5名参与者中有4名出现变化,b波振幅中位数增加27.4%。3名个体的a波振幅增加,其中2名个体的振荡电位也有明显增强。a波振幅在446 Td.s闪光强度时中位数增加最大,为25.8%。1名服用最高剂量(60毫克)的个体在ERG中未表现出形态学上的明显变化。未观察到任何个体的a波和b波峰值时间有差异。
明适应ERG的a波和b波振幅可为了解哌甲酯对ADHD的作用提供线索。