Pereira-da-Silva Luís, Henriques Rafael B, Virella Daniel, Mascarenhas Andreia, Papoila Ana Luísa, Alves Marta, Fernandes Horácio
Neonatology Unit, Hospital Dona Estefânia and Maternidade Dr. Alfredo da Costa, Unidade de Saúde Local São José, Centro Clínico Académico de Lisboa, 1169-045 Lisbon, Portugal.
Medicine of Woman, Childhood and Adolescence Academic Area, NOVA Medical School, Faculdade de Ciências Médicas, Universidade Nova de Lisboa, 1169-056 Lisbon, Portugal.
Children (Basel). 2024 Dec 19;11(12):1544. doi: 10.3390/children11121544.
Opening the incubator side wall to insert a non-sterile length-measuring device carries the risk of microbial contamination and thermal instability for preterm infants. To reduce this inconvenience, a laser-based length-measuring board is proposed to measure body length from outside the incubator.
This device has two laser-line-shaped cursors which can be pointed to opposite ends of a segment to be measured. It is attached to the outer side of one of the incubator's side walls in such a manner as to ensure that its axis is parallel to the longitudinal axis of the segment. To validate the measurements made with this model, a calibrated caliper consisting of a conventional rigid length-measuring board with a resolution of 0.05 mm was constructed to serve as a reference. Crown-heel length was measured in a sample of 45 infants, including 32 preterm and 13 term infants of corrected gestational age at the time of measurement.
Good intra-observer variability was obtained. Near-perfect statistical agreement was found between measurements with both devices, with concordance correlation coefficients of 0.994 (95% CI: 0.990; 0.996) in preterm infants and 0.994 (95% CI: 0.988, 0.998) in infants at term. The clinical relevance of the agreement between measurements was assessed by a Bland-Altman plot, and the difference may reach clinical relevance (up to 1 cm) but without evidence of proportional bias.
The proposed validated laser-based length-measuring board offers a suitable alternative to conventional length-measuring boards for contactless measurement of infant body length.
打开暖箱侧壁以插入非无菌的身长测量装置会给早产儿带来微生物污染和温度不稳定的风险。为减少这种不便,有人提出一种基于激光的身长测量板,可在暖箱外测量身长。
该装置有两个激光线状光标,可指向待测节段的两端。它以确保其轴线与节段纵轴平行的方式附着在暖箱一侧壁的外侧。为验证该模型的测量结果,制作了一个校准卡尺,由分辨率为0.05毫米的传统刚性身长测量板组成,用作参考。对45名婴儿进行了顶臀长度测量,其中包括32名早产儿和13名测量时矫正胎龄的足月儿。
观察者内变异性良好。两种装置的测量结果之间发现了近乎完美的统计学一致性,早产儿的一致性相关系数为0.994(95%CI:0.990;0.996),足月儿为0.994(95%CI:0.988,0.998)。通过布兰德-奥特曼图评估测量结果之间一致性的临床相关性,差异可能达到临床相关性(高达1厘米),但无比例偏差证据。
所提出的经过验证的基于激光的身长测量板为传统身长测量板提供了一种合适的替代方案,用于非接触式测量婴儿身长。