Benavides-Lara Juliana, Manwar Rayyan, McGuire Laura S, Islam Md Tarikul, Shoo Anthony, Charbel Fady T, Menchaca Martha G, Siegel Amanda P, Pillers De-Ann M, Gelovani Juri G, Avanaki Kamran
Richard and Loan Hill Department of Bioengineering, University of Illinois at Chicago, Chicago, IL, United States.
Department of Neurological Surgery, University of Illinois at Chicago - College of Medicine, Chicago, IL, United States.
Photoacoustics. 2023 Aug 24;33:100549. doi: 10.1016/j.pacs.2023.100549. eCollection 2023 Oct.
Intraventricular (IVH) and periventricular (PVH) hemorrhages in preterm neonates are common because the periventricular blood vessels are still developing up to 36 weeks and are fragile. Currently, transfontanelle ultrasound (US) imaging is utilized for screening for IVH and PVH, largely through the anterior fontanelle. However for mild hemorrhages, inconclusive diagnoses are common, leading to failure to detect IVH/PVH or, when other clinical symptoms are present, use of second stage neuroimaging modalities requiring transport of vulnerable patients. Yet even mild IVH/PVH increases the risk of moderate-severe neurodevelopmental impairment. Here, we demonstrate the capability of transfontanelle photoacoustic imaging (TFPAI) to detect IVH and PVH in-vivo in a large animal model. TFPAI was able to detect IVH/PVH as small as 0.3 mL in volume in the brain ( < 0.05). By contrast, US was able to detect hemorrhages as small as 0.5 mL. These preliminary results suggest TFPAI could be translated into a portable bedside imaging probe for improved diagnosis of clinically relevant brain hemorrhages in neonates.
早产儿的脑室内出血(IVH)和脑室周围出血(PVH)很常见,因为脑室周围血管在36周之前仍在发育,且较为脆弱。目前,经囟门超声(US)成像主要通过前囟门用于筛查IVH和PVH。然而,对于轻度出血,诊断结果往往不明确,导致无法检测到IVH/PVH,或者在出现其他临床症状时,需要使用二级神经成像模式,这就需要运送脆弱的患者。然而,即使是轻度IVH/PVH也会增加中度至重度神经发育障碍的风险。在此,我们展示了经囟门光声成像(TFPAI)在大型动物模型中体内检测IVH和PVH的能力。TFPAI能够检测到脑内体积小至0.3 mL的IVH/PVH(<0.05)。相比之下,US能够检测到小至0.5 mL的出血。这些初步结果表明,TFPAI可以转化为一种便携式床边成像探头,用于改善新生儿临床相关脑内出血的诊断。