Title Information
Title
Plasticity in the vertebrate central auditory system: Changes during development and after injury in the adult
Name: Personal
Name Part
Chapman, Judith A.
Role
Role Term: Text
creator
Origin Information
Copyright Date (keyDate="yes", encoding="w3cdtf")
2008
Physical Description
Extent
xviii, 238 p.
digitalOrigin
born digital
Note
Thesis (Ph.D.) -- Brown University (2008)
Name: Personal
Name Part
Simmons, Andrea
Role
Role Term: Text
director
Name: Personal
Name Part
Dunaevsky, Anna
Role
Role Term: Text
reader
Name: Personal
Name Part
Fallon, Justin
Role
Role Term: Text
reader
Name: Corporate
Name Part
Brown University. Psychology
Role
Role Term: Text
sponsor
Genre (aat)
theses
Abstract
The likelihood of functional recovery following neural injury decreases with species complexity, maturity, and whether the injury affects the CNS or PNS. Adult vertebrates unlikely to successfully regenerate injured neurites into the CNS. This is most evident in adult mammals. Whereas there is moderate success in regenerating injured neurites peripherally, often growth cones immediately collapse upon reaching the PNS/CNS border rarely entering the transitional zone. Nonpermissive molecules located within the CNS are thought responsible for ineffective regeneration, as is the lack of limited growth-permissive/instructive molecules. Adult anurans (frogs and toads) express many of these nonpermissive molecules within their CNS, but they are able to regenerate and functionally recover into the CNS targets after nerve lesion (optic and vestibuloauditory nerve lesion (n.II and n.VIII; Sperry 1945; Zakon, 1983.) To understand how effective CNS regeneration occurs in the adult, with the goal of finding a future clinical application, we must further understand how regenerating neurites can effectively "override" nonpermissive signals and recover function without experimenter interference. Regeneration of lesioned cranial nerve (n.VIII) in anurans is studied during pre-determined recovery times. All experiments were also carried out in controls for the opportunity to compare between recovery time and treatment groups:, as follows : 1) cell "birth dating" experiments to investigate differences in mitotic patterns, new cell retention, and post-mitotic phenotypes in n.VIII targets within the medulla; 2) the anatomical extent of regeneration and target connectivity was also explored using lipophilic fluorescent tracers; 3) the vestibular postural deficits from unilateral n.VIII crush (head tilt, limb sprawl) was quantified over recovery time ; 4) and, finally, since the discovery of new genes (or transcriptomes) are expected to be central in understanding permissive regeneration within the nonpermissive CNS, the final experiment included the gene discovery technique, DD-PCR. This technique found differences in mRNA transcripts between lesioned and sham frog tissues homologous to mammalian cDNA s sequences function unknown.
Subject (Local)
Topic
regeneration
Subject (Local)
Topic
anuran
Subject (Local)
Topic
cranial nerve
Subject (Local)
Topic
vestibular. neurogenesis
Subject (FAST) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/1093042")
Topic
Regeneration (Biology)
Subject (FAST) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/810925")
Topic
Anura
Subject (FAST) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/1036064")
Topic
Nerves, Cranial
Subject (FAST) (authorityURI="http://id.worldcat.org/fast", valueURI="http://id.worldcat.org/fast/1024031")
Topic
Mitosis
Record Information
Record Content Source (marcorg)
RPB
Record Creation Date (encoding="iso8601")
20091218
Language
Language Term: Code (ISO639-2B)
eng
Language Term: Text
English
Identifier: DOI
10.7301/Z01J982H
Access Condition: rights statement (href="http://rightsstatements.org/vocab/InC/1.0/")
In Copyright
Access Condition: restriction on access
Collection is open for research.
Type of Resource (primo)
dissertations