(functional or structural)

Biology: The Unity and Diversity of Life (MindTap Course List)
15th Edition
ISBN:9781337408332
Author:Cecie Starr, Ralph Taggart, Christine Evers, Lisa Starr
Publisher:Cecie Starr, Ralph Taggart, Christine Evers, Lisa Starr
Chapter32: Neural Control
Section: Chapter Questions
Problem 8SQ: Skeletal muscles are controlled by ______ . a. sympathetic neurons b. parasympathetic neurons c....
icon
Related questions
Question
4. Name two changes (functional or structural) that would occur in an excitatory synapse
that has undergone successful LTP in the hippocampal CA1 neuron. How would the
postsynaptic membrane respond to the same stimulus before and after it undergoes LTP,
and why?
Transcribed Image Text:4. Name two changes (functional or structural) that would occur in an excitatory synapse that has undergone successful LTP in the hippocampal CA1 neuron. How would the postsynaptic membrane respond to the same stimulus before and after it undergoes LTP, and why?
Expert Solution
Step 1

1 In this study, LTP was induced using a stimulating electrode to induce a brief high-frequency train of action potentials in the afferent pathway, thereby ensuring coincident pre- and post-synaptic depolarization. Recordings of the synaptic response evoked in the population of activated granule cells revealed a lasting enhancement of synaptic strength following tetanic stimulation. 18 In vitro preparations, however, have provided most of the insights relating to the cellular mechanisms of synaptic plasticity. This approach has revealed that repeated pairing of single presynaptic stimuli with post-synaptic depolarization is sufficient to induce LTP, bypassing the requirement for high frequency stimulation.

20 Furthermore, the concept of spike timing-dependent plasticity has been developed following the important observation in other in vitro preparations that the timing of pre- and post-synaptic action potentials determines the polarity of synaptic change. Repeated activation of a presynaptic spike followed by post-synaptic spike, within a brief time window of approximately 50 ms, leads to LTP, while the reverse order leads to LTD. These three characteristics of longevity, input-specificity and associativity are important, not just because they fulfill criteria predicted of an efficient memory mechanism, but because they provide clues as to the molecular mechanisms underlying LTP and LTD, mechanisms that could potentially be addressed to rectify synaptic malfunction.

An external file that holds a picture, illustration, etc.
Object name is cln-66-s1-3-g001.jpg

The most fascinating and important property of the mammalian brain is its remarkable plasticity, which can be thought of as the ability of experience to modify neural circuitry and thereby to modify future thought, behavior, and feeling. Thinking simplistically, neural activity can modify the behavior of neural circuits by one of three mechanisms: by modifying the strength or efficacy of synaptic transmission at preexisting synapses, by eliciting the growth of new synaptic connections or the pruning away of existing ones, or by modulating the excitability properties of individual neurons. Because of its fundamental importance, there has been an enormous amount of work describing the many forms of synaptic plasticity and their underlying mechanisms.
Synaptic transmission can either be enhanced or depressed by activity, and these alterations span temporal domains ranging from milliseconds to enduring modifications that may persist for days or weeks and perhaps even longer.
More lasting changes are thought to play important roles in the construction of neural circuits during development and with long-term forms of memory in the mature nervous system. Given these diverse functions, it is not surprising that many forms and mechanisms of synaptic plasticity have been described.

There are two main types of neuroplasticity: Functional plasticity: the brain's ability to move functions from a damaged area of the brain to other undamaged areas. Structural plasticity: the brain's ability to actually change its physical structure as a result of learning.

1. Long-term potentiation (LTP) is a form of activity-dependent plasticity which results in a persistent enhancement of synaptic transmission.

2.The NMDA-type receptor is critical for some forms of LTP, in particular LTP at the CA3-CA1 synapse in the hippocampus. The postsynaptic spines of CA1 neurons have two types of glutamate receptors; NMDA-type glutamate receptors and the AMPA-type glutamate receptors

3. Long-term potentiation, or LTP, is a process by which synaptic connections between neurons become stronger with frequent activation. LTP is thought to be a way in which the brain changes in response to experience, and thus may be an mechanism underlying learning and memory.

trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 2 steps with 2 images

Blurred answer
Knowledge Booster
Clinical pharmacology
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, biology and related others by exploring similar questions and additional content below.
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
Biology: The Unity and Diversity of Life (MindTap…
Biology: The Unity and Diversity of Life (MindTap…
Biology
ISBN:
9781337408332
Author:
Cecie Starr, Ralph Taggart, Christine Evers, Lisa Starr
Publisher:
Cengage Learning
Biology: The Dynamic Science (MindTap Course List)
Biology: The Dynamic Science (MindTap Course List)
Biology
ISBN:
9781305389892
Author:
Peter J. Russell, Paul E. Hertz, Beverly McMillan
Publisher:
Cengage Learning
Biology 2e
Biology 2e
Biology
ISBN:
9781947172517
Author:
Matthew Douglas, Jung Choi, Mary Ann Clark
Publisher:
OpenStax
Anatomy & Physiology
Anatomy & Physiology
Biology
ISBN:
9781938168130
Author:
Kelly A. Young, James A. Wise, Peter DeSaix, Dean H. Kruse, Brandon Poe, Eddie Johnson, Jody E. Johnson, Oksana Korol, J. Gordon Betts, Mark Womble
Publisher:
OpenStax College
Biology: The Unity and Diversity of Life (MindTap…
Biology: The Unity and Diversity of Life (MindTap…
Biology
ISBN:
9781305073951
Author:
Cecie Starr, Ralph Taggart, Christine Evers, Lisa Starr
Publisher:
Cengage Learning
Fundamentals of Sectional Anatomy: An Imaging App…
Fundamentals of Sectional Anatomy: An Imaging App…
Biology
ISBN:
9781133960867
Author:
Denise L. Lazo
Publisher:
Cengage Learning