Assessment of cerebral oxygenation response to hemodialysis using near-infrared spectroscopy (NIRS): Challenges and solutions.

IF 2.3 3区 医学 Q2 OPTICS Journal of Innovative Optical Health Sciences Pub Date : 2021-11-01 Epub Date: 2021-06-17 DOI:10.1142/s1793545821500164
Ardy Wong, Lucy Robinson, Seena Soroush, Aditi Suresh, Dia Yang, Kelechi Madu, Meera N Harhay, Kambiz Pourrezaei
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引用次数: 3

Abstract

To date, the clinical use of functional near-infrared spectroscopy (NIRS) to detect cerebral ischemia has been largely limited to surgical settings, where motion artifacts are minimal. In this study, we present novel techniques to address the challenges of using NIRS to monitor ambulatory patients with kidney disease during approximately eight hours of hemodialysis (HD) treatment. People with end-stage kidney disease who require HD are at higher risk for cognitive impairment and dementia than age-matched controls. Recent studies have suggested that HD-related declines in cerebral blood flow might explain some of the adverse outcomes of HD treatment. However, there are currently no established paradigms for monitoring cerebral perfusion in real-time during HD treatment. In this study, we used NIRS to assess cerebral hemodynamic responses among 95 prevalent HD patients during two consecutive HD treatments. We observed substantial signal attenuation in our predominantly Black patient cohort that required probe modifications. We also observed consistent motion artifacts that we addressed by developing a novel NIRS methodology, called the HD cerebral oxygen demand algorithm (HD-CODA), to identify episodes when cerebral oxygen demand might be outpacing supply during HD treatment. We then examined the association between a summary measure of time spent in cerebral deoxygenation, derived using the HD-CODA, and hemodynamic and treatment-related variables. We found that this summary measure was associated with intradialytic mean arterial pressure, heart rate, and volume removal. Future studies should use the HD-CODA to implement studies of real-time NIRS monitoring for incident dialysis patients, over longer time frames, and in other dialysis modalities.

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使用近红外光谱(NIRS)评估血液透析脑氧合反应:挑战和解决方案。
迄今为止,临床上使用功能性近红外光谱(NIRS)来检测脑缺血在很大程度上局限于手术环境,其中运动伪影最小。在这项研究中,我们提出了新的技术来解决使用近红外光谱(NIRS)在大约8小时血液透析(HD)治疗期间监测流动肾脏疾病患者的挑战。需要HD的终末期肾病患者比同龄的对照组有更高的认知障碍和痴呆的风险。最近的研究表明,HD相关的脑血流量下降可能解释了HD治疗的一些不良后果。然而,目前还没有建立在HD治疗期间实时监测脑灌注的范例。在这项研究中,我们使用近红外光谱(NIRS)评估95名常见HD患者在连续两次HD治疗期间的脑血流动力学反应。我们在主要为黑人的患者队列中观察到大量的信号衰减,需要修改探针。我们还观察到一致的运动伪影,我们通过开发一种新的近红外光谱方法来解决这个问题,称为HD脑需氧量算法(HD- coda),以识别HD治疗期间脑需氧量可能超过供应的发作。然后,我们检查了使用HD-CODA得出的脑脱氧时间的总结测量与血流动力学和治疗相关变量之间的关联。我们发现这一总结性指标与溶栓期平均动脉压、心率和容积清除相关。未来的研究应该使用HD-CODA来实施对突发透析患者的实时近红外光谱监测的研究,在更长的时间框架内,以及在其他透析方式中。
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来源期刊
Journal of Innovative Optical Health Sciences
Journal of Innovative Optical Health Sciences OPTICS-RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
CiteScore
4.50
自引率
20.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: JIOHS serves as an international forum for the publication of the latest developments in all areas of photonics in biology and medicine. JIOHS will consider for publication original papers in all disciplines of photonics in biology and medicine, including but not limited to: -Photonic therapeutics and diagnostics- Optical clinical technologies and systems- Tissue optics- Laser-tissue interaction and tissue engineering- Biomedical spectroscopy- Advanced microscopy and imaging- Nanobiophotonics and optical molecular imaging- Multimodal and hybrid biomedical imaging- Micro/nanofabrication- Medical microsystems- Optical coherence tomography- Photodynamic therapy. JIOHS provides a vehicle to help professionals, graduates, engineers, academics and researchers working in the field of intelligent photonics in biology and medicine to disseminate information on the state-of-the-art technique.
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