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Biomedical subjects

L G Bell

Publications and source records attributed to L G Bell.

At least 19 recordsLinked to original sources

Triangulation and adolescent development in the U.S. and Japan.

Using an indirect measure of family structure, relationships between parents and adolescents were studied in 99 U. S. and 60 Japanese families. As two-person relationships tend toward instability under stress, a third person may be drawn in to stabilize the system. Parents, for example, may avoid the tension in the marital relationship by focusing together on an adolescent's problem, or pull the adolescent into a coalition with one parent. Either way the parents are said to have "triangled" the adolescent. In this study, a relationship is found between parents avoiding tension in their own relationship and their tendency to triangle an adolescent. Triangled daughters, in both cultures, had lower scores on ego development, supporting the hypothesis that such patterns can be detrimental to the adolescent's personal development. The discussion includes comments on cross-cultural research.

Adolescent↗

Incidence of major injuries, severe colic, and acute laminitis at American Horse Shows Association A- and B-rated shows.

A questionnaire was designed to determine the incidence of major injuries, severe colic, and acute laminitis in horses at American Horse Shows Association (AHSA) A- and B-rated shows, ie, those shows requiring a veterinarian in attendance. The questionnaire was sent to the show stewards and filled out by the attending veterinarians of the AHSA A- and B-rated shows held from January 1982 to October 1984. Of 2,952 questionnaires sent out, 799 (27%) were completed and returned by veterinarians; 99 of them were discarded because of incomplete or misleading information. The study revealed a low incidence of major injuries, severe colic, and acute laminitis in horses at AHSA A- and B-rated shows. In 700 horse shows surveyed, there was a total of 231 major injuries, severe colic, or acute laminitis. Considering that the shows surveyed had a median number of 193 horses and a median duration of 3 days, the 231 injuries represent a relatively small number, compared with the general population at risk.

Animals↗

Protein migration from transplanted nuclei in Amoeba proteus. I. The relation to the cell cycle and RNA migration, as studied by autoradiography.

Autoradiography has been used to examine the migration of proteins from a radioactively labelled amoeba nucleus following transplantation into an unlabelled homophasic amoeba. Nuclei were transferred at three times in the cell cycle coinciding with DNA synthesis (4 h post-division); a peak of RNA synthesis (25 h); and a relative lull in synthetic activity (43 h). Six amino acids were added individually to the culture medium to label the nuclear proteins. Migration of the proteins from the donor nucleus was found to be greatest following the transfer of [3H]aspartic acid-labelled nuclei and least with protein labelled with the basic amino acids. All amino acids exhibited the greatest extent of migration following the 25-h transfers, i.e., coinciding with a peak of RNA synthesis at 26-27.5 h. Actinomycin D (actD) inhibition of RNA synthesis reduced, but did not eliminate the extent of protein migration from the transplanted nucleus, thus indicating the existence of two classes of migratory proteins. Firstly, proteins, associated with RNA transport, which migrated mainly into the host cytoplasm. The second class migrated into the host nucleus from the transplanted nucleus, irrespective of RNa synthesis. The shuttling character of the latter class of proteins is consistent with a role of regulation of nuclear activity.

Amoeba↗

An autoradiographical study of amino acid and nucleoside incorporation during the cell cycle of Amoeba proteus.

The incorporation of tritiated thymidine, uridine and leucine, into the acid-precipitable material of DNA. RNA and proteins, respectively, was studied by autoradiography throughout the cell cycle of Amoeba proteus. DNA synthesis occupied the first 17 h of the cycle (57 h long) and 2 peaks between 0.5 and 9.13 h accounted for the majority of the thymidine incorporation. RNA synthesis was represented by a series of peak uridine grain counts, the 3 major peaks occurring at 10, 26-27 and 47-48 h. The incorporation of leucine also followed a pattern of peaks and dips, the main peaks occurring 1-2 h after the major increases in uridine incorporation. The fraction of label present over the nucleus decreased during the cell cycle, and this was probably due to a lowered incorporation of the leucine label by proteins synthesized in the cytoplasm and destined to become nuclear proteins. The incorporation patterns of 6 amino acids (arginine, aspartic acid, leucine, lysine, serine and valine) were studied individually during 3 periods of the cell cycle: 0-10 h (S phase); 20-30 h (early G2); and 40-50 h (mid-late G2). Variations in the intensity and timings of the incorporation maxima of the amino acids were observed, although the timings of increased grain counts of some of the amino acids frequently coincided. "Unique" incorporation peaks (i.e. only observed in one of the amino acids studied) possibly indicate the synthesis of phase-specific proteins. The amino acid and nucleoside incorporation profiles presented in this paper will enable the results obtained from future studies on amoebae to be related to the macromolecular synthesis patterns.

Amoeba↗

Studies on changes in the nuclear helices of Amoeba proteus during the cell cycle.

The fine structure of the nuclei of synchronously growing cell population of Amoeba proteus was studied at I-h intervals during the interphase. This study showed that the nuclear helices undergo increases in their number at certain stages during interphase. These changes were found to correlate with ultrastructural changes occurring in the nucleoli.

Amoeba↗

Relations between the nuclear activity and the variable 3H-amino acid incorporation pattern in Amoeba proteus.

Tracer kinetic studies have revealed the existence of a variable pattern of 3H-amino acid incorporation into amoeba proteins during the early G2 phase of the cell cycle. Two peaks of incorporation of [3H]leucine were found to occur at 19 and 22 h, whereas a single peak at 17 h was noticed in the amoebae labelled with [3H]lysine. An almost 2-fold increase of the labelled amino acid incorporation occurred during the peak periods, while the other periods showed a more or less steady state of incorporation, suggesting a basal rate of synthesis at these times. In a detailed study involving the peaks and the basal incorporation period of [3H]leucine, it was shown that the removal of the nucleus or Actinomycin D treatment eliminated the peaks but the base line protein synthesis was not affected. This suggests that for the peak synthetic periods, mRNA is probably transcribed concurrently, followed by immediate translation, whereas long-life mRNA accounts for the basal synthetic activity.

Amoeba↗

Timing of nucleolar DNA replication in Amoeba proteus.

Light- and electron-microscope autoradiography have been used to follow the incorporation of [3H]thymidine at different stages during the interphase of synchronously growing populations of Amoeba proteus. Two main patterns were found for tritiated thymidine incorporation, i.e. DNA synthesis. The major incorporation was in the central region of the nucleus, but a lesser degree of incorporation occurred in the nucleolar region. The bulk of this nucleolar DNA was found to be late replicating, i.e. it replicated during the G2 phase.

Amoeba↗