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Orbital colour Doppler imaging.

Abstract

Colour Doppler imaging (CDI) is an ultrasonic method for qualitatively and quantitatively assessing blood flow. Recently this technique has been adapted for investigation of the orbital, optic nerve and ocular vasculature. We discuss the history, principles and methodology of this examination technique for ophthalmology. Also described are normal haemodynamic characteristics as well as the findings in common pathological states involving derangements of orbital blood flow. Although CDI is relatively new to ophthalmology it has already proved to be of benefit in conditions with altered orbital, ocular and optic nerve blood flow. In the future it is expected that the indications for the applications of CDI will become more clearly defined and that orbital CDI will be more widely available and utilised, especially in the investigation of vascular diseases of the orbit, optic nerve and retina.

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BibTeXRIS

N S Aburn, R C Sergott. 1993. Orbital colour Doppler imaging.. https://doi.org/10.1038/eye.1993.147

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Pulmonary arterial reconstruction for pulmonary coarctation in early infancy.

BACKGROUND: Pulmonary atresia with pulmonary coarctation may complicate diminished and unbalanced pulmonary development. The aim of this study is to assess the outcome of pulmonary arterial reconstruction with cardiopulmonary bypass in early infancy for sufficient and balanced pulmonary development. METHODS: We performed a retrospective review of 15 patients with pulmonary coarctation younger than 4 months of age who underwent pulmonary arterial reconstruction between 2001 and 2005. The mean age and weight were 42.2 days and 3.62 kg, respectively. The patient population included 5 biventricular repair candidates and 10 Fontan candidates. To evaluate the pulmonary arterial development, the preoperative and postoperative pulmonary arterial index and minimum diameter of the pulmonary artery were compared. RESULTS: No early or in-hospital deaths occurred, and there was no nonconfluent pulmonary artery development or segmental mal-development after a mean follow-up period of 14.9 months. Immediate pulmonary flow regulation was required in 2 patients because of excessive pulmonary flow. The mean pulmonary arterial index increased significantly from 103 mm2/m2 to 343 mm2/m2, and the mean minimum diameter of the pulmonary artery increased significantly from 2.02 mm to 4.45 mm. Four biventricular repair candidates completed definitive repair, and 2 required surgical reintervention in the pulmonary artery. Six Fontan candidates completed the Glenn procedure, and 1 completed the Fontan procedure. Three required surgical reintervention in the pulmonary artery. Two late deaths occurred after the Glenn procedure because of ventricular dysfunction and respiratory infection. CONCLUSIONS: Pulmonary arterial reconstruction in early infancy provides sufficient and balanced pulmonary arterial development for pulmonary atresia with pulmonary coarctation.

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