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Biomedical subjects

D D Simmons

Publications and source records attributed to D D Simmons.

33 records · Page 2Linked to original sources

Reconstructions of efferent fibers in the postnatal hamster cochlea.

It is well known that adult-like physiological functioning of the mammalian postnatal cochlea occurs coincidentally with the presence of efferent synapses on outer hair cells (OHCs). This study described the cochlear innervation patterns of thick efferent fibers traveling in the vestibular nerve in postnatal hamsters ranging in age from day zero to day 10. At least three kinds of efferent fibers were labeled via an in vitro horseradish peroxidase (HRP) technique: varicose, thin efferents; nonvaricose, thin efferents; and nonvaricose, thick efferents. Nonvaricose thick efferents were reconstructed from the basal third of the cochlea. Reconstructed efferent fibers traversed in the intraganglionic spiral bundle (IGSB) on the peripheral edge of the spiral ganglion and branched profusely in the osseous spiral lamina (OSL). From day zero to day five, large (greater than 1.0 microns) diameter nonvaricose efferent fibers gave rise to branches that either terminated underneath inner hair cells or appeared to end blindly in the OSL. Efferent fibers also had branches that traveled in the inner spiral bundle (ISB) and tunnel spiral bundle (TSB). In cochleae from hamsters six to eight days old, some thin and thick diameter efferent fibers contacted both inner and outer hair cells. By the tenth day, large diameter fibers traveled radially across the tunnel of Corti to terminate on one to five OHCs. As early as day seven, large diameter fibers also appear to terminate preferentially on OHCs in row one. These observations are consistent with the notion that the end of the first postnatal week represents a critical period in the formation of adult-like synapses on the OHCs. The data also suggest a developmental transition period when efferent fibers contact both hair cell types before contacting OHCs separately.

Animals↗

Measuring personal values that are specific to eating: reliability, factors, and eating pattern correlates.

Eating disorders, particularly weight control disorders, appear resistant to long-term modification. While personal values have been shown to influence long-term behavior, their influence on eating patterns has not been studied because of the lack of an instrument to measure those values that are specific to eating. The Eating Values Survey (EVS) was created to measure priorities given to 21 eating-related values, such as sensory qualities of food, the experience of hunger, socializing with others, body appearance, nutritional contribution to health, etc. Responses of 109 male and 99 female university students to the EVS were found stable over a 2-week period and revealed five factors, identified as Gusto, Easy Necessity, Orderliness, Gourmet, and Social Approval. EVS scores also correlated significantly with such self-reported eating disorder variables as being overweight and self-induced vomiting. Sex differences in eating values appeared matters of emphasis rather than of distinction.

Adult↗

Afferent innervation of outer hair cells in adult cats: I. Light microscopic analysis of fibers labeled with horseradish peroxidase.

Outer spiral fibers (OSFs), the afferent innervation of the outer hair cells (OHCs), were retrogradely labeled following horseradish peroxidase injections into the cat's auditory nerve. The peripheral branching patterns of 85 OSFs from adult cochleas were reconstructed. Fibers contacted OHCs via terminal or en passant swellings; however, the latter were seen exclusively in the apical half of the cochlea. Many OSFs also gave off branches ending on structures other than OHCs. Fibers in the cochlear apex were much more highly branched than in the base. Most fibers contacted only one row of OHCs, and more fibers contacted row 1 than row 2 or row 3 OHCs. Third-row fibers were the most highly branched in all cochlear regions. These results are consistent with a growing body of morphological evidence that suggests that the peripheral branching patterns of OSFs may be fundamentally similar in all mammalian ears.

Afferent Pathways↗

Afferent innervation of outer hair cells in adult cats: II. Electron microscopic analysis of fibers labeled with horseradish peroxidase.

Outer spiral fibers (OSFs) were retrogradely labeled with injections of horseradish peroxidase. After the peripheral arborization patterns were reconstructed at the light microscopic level (Simmons and Liberman, '88), restricted regions of selected fibers were analyzed via electron-microscopic reconstruction of serial sections. The ultrastructural data in the present study suggested that the contact between the outer hair cell (OHC) and the terminal swellings of OSFs corresponds to the afferent synapse described in numerous other ultrastructural studies. The en passant swellings that contacted OHCs also appeared to be points of synaptic contact. However, en passant synapses were not always associated with a swelling of the OSF at the point of contact: thus, the light-microscopic reconstructions probably underestimate the numbers of synapses. OSF branches terminating well below the OHCs were seen to end most commonly in intimate contact with the Deiters' cells. Membrane specialization was occasionally seen at this point of contact; however, the specialization was sufficiently undifferentiated to preclude identification.

Animals↗

Self-reports of eating behavior, goals, imagery, and health status: principal components and sex differences.

University students (N = 208) completed a questionnaire on four aspects of eating: behavior, goals, imagery, and health status. A principal components analysis of the 18 self-report variables identified six factors: Weight Control Failure, Sensory Awareness of Food and Eating, Stable Eating Pattern, Unrestrained Overeating, "Home Cooking and Good Digestion," and Environmental Indifference. Sex differences in self-reporting were statistically significant on 10 of the 18 variables, with 6 of those significant variables heavily loaded on the first factor: Weight Control Failure. Analysis of these variables suggests that women report eating to be more problematic than do men. Several of the aspects of self-reports are discussed, including the apparent independence of sensory awareness of food and eating from self-reports of behavior, goals, and health status.

Adult↗

Applications of neuronal labeling techniques to the study of the peripheral auditory system.

Horseradish peroxidase (HRP) techniques have recently been applied to the study of the peripheral auditory system. These techniques make it possible to trace single, auditory-nerve fibers from their peripheral terminals on sensory cells to their central terminations within the cochlear nucleus. For the large, myelinated axons of type-I neurons contacting inner hair cells, HRP can be injected intracellularly through the same electrode used to record neural activity, allowing correlations to be made between structure and function on a single-cell basis. From these data, a cochlear frequency map has been constructed, and morphological correlates of differences in spontaneous discharge have been identified. For the small, unmyelinated axons of type-II neurons contacting outer hair cells, single-unit recordings have not yet been made; however, these neurons have been labeled by gross extracellular injections of HRP. Extracellular injections have also been used to study the peripheral terminations of single efferent neurons projecting to the outer hair cell region. The afferent fibers to the outer hair cell (OHC) region contact primarily OHCs from the third row, while efferent fibers primarily contact cells from the first row. Single efferent fibers innervate OHCs over a significantly larger cochlear length than single afferent fibers of either type. Possible functional interpretations of these morphological differences are discussed.

Animals↗

Postnatal calcitonin gene-related peptide in the superior olivary complex.

The purpose of this study was to investigate quantitatively the distribution of calcitonin gene-related peptide (CGRP)-positive neurons within the superior olivary complex (SOC) at various postnatal ages. In the lateral superior olive (LSO), most if not all, CGRP-positive cells correspond to the cholinergic portion of the lateral olivocochlear system which innervates the cochlea. Brains from 1-day old (P1) through juvenile (P30) hamsters were used. At all ages, CGRP-positive neurons were seen throughout the various nuclei of the SOC. There was a dramatic shift in the distribution of CGRP-positive neurons from being predominantly periolivary to being predominantly confined within the LSO. The number of CGRP-positive neurons clearly increased as a function of increasing age. At the earliest postnatal ages, the LSO contained few if any immunostained cells, whereas at later ages the LSO contained the majority (greater than 70%) of the immunostained cells. Assuming that these CGRP-positive cells within the LSO correspond to olivocochlear neurons, these data suggest that in hamsters the lateral olivocochlear system may be immature at birth up until the second postnatal week.

Aging↗

The human olivocochlear system: organization and development.

The goals of the present study were to identify olivocochlear neurons in the human brainstem, to establish the time course of their early development and to compare the organization of the human olivocochlear system to that of other mammals. To accomplish these goals, we used immunohistochemistry for choline acetyltransferase (ChAT) and calcitonin gene-related peptide (CGRP) in postmortem brainstems of human subjects ranging in age from 16 fetal weeks to 17 years. By immunostaining, we identified two classes of cells in the superior olivary complex: both classes were seen to be present from the twenty-first fetal week to the seventeenth year. Neurons which are immunostained only for ChAT are located primarily in the dorsomedial, ventral and ventrolateral sectors of the periolivary region. These neurons are predominantly bipolar or multipolar cells, and are probably homologous to medial olivocochlear neurons in other species. A second population of cells is immunoreactive for both ChAT and CGRP. This population includes a cluster of mostly small oval neurons, located on the dorsal edge of the olivary complex, and a variable number of cells found along the margin of the lateral olivary nucleus. These ChAT- and CGRP-immunoreactive cells are likely to be homologous to the lateral olivocochlear system in other mammals. With increasing age, the dorsal cluster of small cells shifts from its original cap-like position over the lateral olivary nucleus to become an extended column of cells lying among the fibers of the olivocochlear bundle.

Adolescent↗