Search PubMedSearch

Biomedical subjects

G Adomian

Publications and source records attributed to G Adomian.

4 recordsLinked to original sources

A distinct lethal neonatal chondrodysplasia with snail-like pelvis: Schneckenbecken dysplasia.

We describe the clinical, radiographic, histopathologic, and ultrastructural features of a distinct neonatal lethal chondrodysplasia inherited as an autosomal recessive trait. The characteristic radiographic findings consist of flattened, hypoplastic vertebral bodies; short ribs; hypoplastic iliac bones with "a snail-like" configuration; short, broad long-bones with dumbbell-like appearance; short and wide fibula; and precocious ossification of the tarsus. Chondro-osseous histology is characteristic with hypervascularity, increased cellular density, and normal size chondrocytes with a centrally located round nucleus and absence of lacunar space. Because of the snail-like radiographic appearance of the pelvis in this disorder, we propose the name "Schneckenbecken dysplasia" (ie, German for snail pelvis).

Dwarfism

Chondrodysplasia punctata in an infant with duplication 16p due to a 7;16 translocation.

This paper describes a newborn with a number of clinical manifestations compatible with duplication 16p due to a 46, XY, -7, +der (7), t(7;16) (p22;p13) pat karyotype. In addition, the baby had chondrodysplasia punctata, whose distribution of lesions did not match any of the well-documented forms of these disorders. The baby also had microcornea and lacked a gallbladder, two features, in addition to chondrodysplasia punctata, that have not previously been noted in cases of duplication 16p.

Chondrodysplasia Punctata

Prenatal diagnosis of asphyxiating thoracic dysplasia.

A fetus at risk for asphyxiating thoracic dysplasia was studied with ultrasound examination at 16, 18, and 23 weeks of pregnancy. Definite shortness of fetal femora was observed. Radiographic and histologic examinations after pregnancy termination confirmed the diagnosis. Asphyxiating thoracic dysplasia appears to be one of an increasing number of skeletal dysplasias that can be diagnosed prenatally with ultrasound.

Asphyxia Neonatorum

Biological system interactions.

Mathematical modeling of cellular population growth, interconnected subsystems of the body, blood flow, and numerous other complex biological systems problems involves nonlinearities and generally randomness as well. Such problems have been dealt with by mathematical methods often changing the actual model to make it tractable. The method presented in this paper (and referenced works) allows much more physically realistic solutions.

Blood Flow Velocity