PubMed Health⌕ Search

Biomedical subjects

G Dizinno

Publications and source records attributed to G Dizinno.

7 recordsLinked to original sources

A note on measuring apprehension about writing.

Having revised Daly and Miller's 1975 unidimensional Writing Apprehension Test, Riffe and Stacks in 1992 proposed eight multidimensional factors derived from responses to 56 items in their Mass Communication Writing Apprehension Measure, administered to communication students to identify the various dimensions of apprehension about writing shared with business writers and specific to their major. The current authors administered the questionnaire at the beginning of an academic year to 419 freshmen from all undergraduate schools and majors at a private liberal arts university. It was hypothesized that the factors found among the homogeneous population of communication majors would not be replicated among the more heterogeneous student population. The hypothesis was partially upheld. Seven factors were identified. Two duplicated most items found by Riffe and Stacks (1992), four added items, and one was new. The results of this study suggest that, although the general population of students differs from students in mass communication, as Riffe and Stacks remarked, the groups also share similar content in their writing apprehension, that writing apprehension is multidimensional, that caution must be exercised when administering any instrument for the diagnostic and counseling purposes suggested by Riffe and Stacks, and that writing apprehension should also be investigated from the perspective of locus of control.

Adolescent↗

Stimuli for male mouse (Mus musculus) ultrasonic courtship vocalizations: presence of female chemosignals and/or absence of male chemosignals.

In research on animal chemocommunication, biological odors are sometimes presented by being applied to a "neutral" animal (e.g., castrated or ovariectomized conspecific). This technique is typically utilized when the behavioral response to the odor requires the presence of a conspecific. In five experiments, mice (Mus musculus) that might be expected to be neutral stimuli were examined for their abilities to elicit ultrasonic courtship vocalizations from male mice. Paradoxically, adult castrated males, adult males that were neonatally castrated, hypophysectomized males, prepubertal females, and hypophysectomized females all elicited more vocalizations than would have been predicted from previous research in which their urine alone was used as the stimulus. These and previous results are consistent with courtship vocalizations being promoted by chemosignals from females and/or by an absence of cues from males. Thus a truly neutral conspecific for presenting female sex odors may not exist in mice.

Animals↗

Pheromonal regulation of male mouse ultrasonic courtship (Mus musculus).

Biochemicals from several sites on the body of female house mice (Mus musculus) were found to elicit 70-kHz ultrasonic calls from male mice. Experiment 1 demonstrated that an anaesthetized female wrapped in an odour-impermeable plastic bag elicited ultrasounds from males when either the front or rear of their body was left exposed. In experiment 2 cotton swabs rubbed on the face and cheeks of females but not from males elicited ultrasonic calls from males. The results of experiment 3 suggested that female vaginal odours also elicit calls. Experiments 4 and 5 demonstrated that males will also emit ultrasounds in response to female but not male urine. The source and chemical nature of this 'ultrasound-releasing pheromone' remain to be discovered.

Animals↗

Sexual dimorphism in ultrasonic vocalizations of mice (Mus musculus): gonadal hormone regulation.

Male mice (Mus musculus), during courtship and sexual behavior, vocalize substantially more 70-kHz ultrasounds than do females. Four experiments demonstrated that testosterone propionate (TP) substantially increased ultrasonic emissions and mounting by ovariectomized females and the long-term gonadectomized males and females increased their amount of ultrasound production in response to TP to approximately the same levels. From these results it is suggested that the sexual dimorphism normally seen in ultrasonic vocalizations can be accounted for by the activational effects of androgen in adulthood.

Animals↗