首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Tissue-plastinated vs. celloidin-embedded large serial sections in video analog and digital photographic on-screen reproduction: a preliminary step to exact virtual 3D modelling exemplified in the normal midface and cleft-lip and palate
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Tissue-plastinated vs. celloidin-embedded large serial sections in video analog and digital photographic on-screen reproduction: a preliminary step to exact virtual 3D modelling exemplified in the normal midface and cleft-lip and palate

机译:在视频模拟和数字摄影屏幕上复制中组织塑化与类固醇嵌入的大序列切片:精确虚拟3D建模的初步步骤以正常的中脸left裂和上颚为例

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摘要

This study analyses tissue-plastinated vs. celloidin-embedded large serial sections, their inherent artefacts and aptitude with common video, analog or digital photographic on-screen reproduction. Subsequent virtual 3D microanatomical reconstruction will increase our knowledge of normal and pathological microanatomy for cleft-lip-palate (clp) reconstructive surgery. Of 18 fetal (six clp, 12 control) specimens, six randomized specimens (two clp) were BiodurE12-plastinated, sawn, burnished 90 µm thick transversely (five) or frontally (one), stained with azureII/methylene blue, and counterstained with basic-fuchsin (TP-AMF). Twelve remaining specimens (four clp) were celloidin-embedded, microtome-sectioned 75 µm thick transversely (ten) or frontally (two), and stained with haematoxylin–eosin (CE-HE). Computed-planimetry gauged artefacts, structure differentiation was compared with light microscopy on video, analog and digital photography. Total artefact was 0.9% (TP-AMF) and 2.1% (CE-HE); TP-AMF showed higher colour contrast, gamut and luminance, and CE-HE more red contrast, saturation and hue (P < 0.4). All (100%) structures of interest were light microscopically discerned, 83% on video, 76% on analog photography and 98% in digital photography. Computed image analysis assessed the greatest colour contrast, gamut, luminance and saturation on video; the most detailed, colour-balanced and sharpest images were obatined with digital photography (P < 0.02). TP-AMF retained spatial oversight, covered the entire area of interest and should be combined in different specimens with CE-HE which enables more refined muscle fibre reproduction. Digital photography is preferred for on-screen analysis.
机译:这项研究分析了常见的视频,模拟或数字照片在屏幕上的复制情况,分析了组织塑化与类固醇嵌入的大序列切片,它们固有的伪像和特性。随后的虚拟3D显微解剖重建将增加我们对唇left裂(clp)重建手术的正常和病理显微解剖的了解。在18个胎儿标本(6个clp,12个对照)中,随机抽取6个标本(两个clp)进行BiodurE12增塑,锯切,横向(五个)或正面(一个)抛光90 µm厚,用天青II /亚甲蓝染色,并用碱性品红(TP-AMF)。剩余的十二个标本(四个clp)被包埋类纤维素,横向(十个)或正面(两个)切片机切成75微米厚,并用苏木精-曙红(CE-HE)染色。在计算机,模拟和数字摄影上,将计算机平面测量的人工制品,结构差异与光学显微镜进行了比较。总伪像为0.9%(TP-AMF)和2.1%(CE-HE); TP-AMF显示出更高的色彩对比度,色域和亮度,而CE-HE显示出更高的红色对比度,饱和度和色相(P <0.4)。所有感兴趣的结构(100%)在显微镜下都可以辨认出光,视频中占83%,模拟摄影中占76%,数字摄影中占98%。计算机图像分析评估了视频上最大的色彩对比度,色域,亮度和饱和度;使用数码摄影可获得最详细,色彩平衡和最清晰的图像(P <0.02)。 TP-AMF保留了空间监督功能,覆盖了整个感兴趣的区域,应与CE-HE组合在不同的标本中,以实现更精细的肌纤维繁殖。首选数字摄影进行屏幕分析。

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