-1::1
Simple Hit Counter
Skip to content

Products

Solutions

×
×
Sign In

KR

EN - EnglishCN - 简体中文DE - DeutschES - EspañolKR - 한국어IT - ItalianoFR - FrançaisPT - Português do BrasilPL - PolskiHE - עִבְרִיתRU - РусскийJA - 日本語TR - TürkçeAR - العربية
Sign In Start Free Trial

RESEARCH

JoVE Journal

Peer reviewed scientific video journal

Behavior
Biochemistry
Bioengineering
Biology
Cancer Research
Chemistry
Developmental Biology
View All
JoVE Encyclopedia of Experiments

Video encyclopedia of advanced research methods

Biological Techniques
Biology
Cancer Research
Immunology
Neuroscience
Microbiology
JoVE Visualize

Visualizing science through experiment videos

EDUCATION

JoVE Core

Video textbooks for undergraduate courses

Analytical Chemistry
Anatomy and Physiology
Biology
Calculus
Cell Biology
Chemistry
Civil Engineering
Electrical Engineering
View All
JoVE Science Education

Visual demonstrations of key scientific experiments

Advanced Biology
Basic Biology
Chemistry
View All
JoVE Lab Manual

Videos of experiments for undergraduate lab courses

Biology
Chemistry

BUSINESS

JoVE Business

Video textbooks for business education

Accounting
Finance
Macroeconomics
Marketing
Microeconomics

OTHERS

JoVE Quiz

Interactive video based quizzes for formative assessments

Authors

Teaching Faculty

Librarians

K12 Schools

Biopharma

Products

RESEARCH

JoVE Journal

Peer reviewed scientific video journal

JoVE Encyclopedia of Experiments

Video encyclopedia of advanced research methods

JoVE Visualize

Visualizing science through experiment videos

EDUCATION

JoVE Core

Video textbooks for undergraduates

JoVE Science Education

Visual demonstrations of key scientific experiments

JoVE Lab Manual

Videos of experiments for undergraduate lab courses

BUSINESS

JoVE Business

Video textbooks for business education

OTHERS

JoVE Quiz

Interactive video based quizzes for formative assessments

Solutions

Authors
Teaching Faculty
Librarians
K12 Schools
Biopharma

Language

ko_KR

EN

English

CN

简体中文

DE

Deutsch

ES

Español

KR

한국어

IT

Italiano

FR

Français

PT

Português do Brasil

PL

Polski

HE

עִבְרִית

RU

Русский

JA

日本語

TR

Türkçe

AR

العربية

    Menu

    JoVE Journal

    Behavior

    Biochemistry

    Bioengineering

    Biology

    Cancer Research

    Chemistry

    Developmental Biology

    Engineering

    Environment

    Genetics

    Immunology and Infection

    Medicine

    Neuroscience

    Menu

    JoVE Encyclopedia of Experiments

    Biological Techniques

    Biology

    Cancer Research

    Immunology

    Neuroscience

    Microbiology

    Menu

    JoVE Core

    Analytical Chemistry

    Anatomy and Physiology

    Biology

    Calculus

    Cell Biology

    Chemistry

    Civil Engineering

    Electrical Engineering

    Introduction to Psychology

    Mechanical Engineering

    Medical-Surgical Nursing

    View All

    Menu

    JoVE Science Education

    Advanced Biology

    Basic Biology

    Chemistry

    Clinical Skills

    Engineering

    Environmental Sciences

    Physics

    Psychology

    View All

    Menu

    JoVE Lab Manual

    Biology

    Chemistry

    Menu

    JoVE Business

    Accounting

    Finance

    Macroeconomics

    Marketing

    Microeconomics

Start Free Trial
Loading...
Home
JoVE Journal
Neuroscience
Mouse Hippocampus and Prefrontal Cortex의 Dual Extracellular Recordings in the Mouse Hippocampus ...
Mouse Hippocampus and Prefrontal Cortex의 Dual Extracellular Recordings in the Mouse Hippocampus ...
JoVE Journal
Neuroscience
A subscription to JoVE is required to view this content.  Sign in or start your free trial.
JoVE Journal Neuroscience
Dual Extracellular Recordings in the Mouse Hippocampus and Prefrontal Cortex

Mouse Hippocampus and Prefrontal Cortex의 Dual Extracellular Recordings in the Mouse Hippocampus and Prefrontal Cortex(생쥐 해마와 전전두엽 피질의 이중 세포외 기록)

Full Text
2,123 Views
04:44 min
February 16, 2024

DOI: 10.3791/66003-v

Dechuan Sun1,2, Mona Amiri1, Luke Weston1,2, Chris French1

1Neural Dynamics Laboratory, Department of Medicine,The University of Melbourne, 2Department of Electrical and Electronic Engineering,The University of Melbourne

AI Banner

Please note that some of the translations on this page are AI generated. Click here for the English version.

Overview

This protocol details the use of a custom-designed recording device and electrodes to perform dual, electrode local field potential (LFP) recordings in the mouse hippocampus and prefrontal cortex. The study investigates the impact of drug administration on LFP characteristics, contributing to our understanding of cognitive functions in these brain areas.

Key Study Components

Area of Science

  • Electrophysiology
  • Cognitive Neuroscience
  • Neuropharmacology

Background

  • Local field potentials are crucial for understanding neural communication.
  • Research in the hippocampus and prefrontal cortex aids in elucidating cognitive processes.
  • The study utilizes a low-cost and ultra-light device for high-signal noise recordings.
  • This protocol supports understanding interregional communication in cognitive research.

Purpose of Study

  • To establish a method for investigating drug effects on LFP properties.
  • To facilitate recording and analyzing neural signals across different brain regions.
  • To provide a protocol that enhances the understanding of brain function through recorded LFPs.

Methods Used

  • The study utilizes a custom-designed recording device for LFP recordings.
  • Mouse subjects are used as a biological model, specifically focusing on hippocampus and prefrontal cortex regions.
  • The protocol involves precise implantation of electrodes following surgical procedures.
  • A comprehensive recording setup is initiated after a recovery period, followed by drug administration and subsequent signal recording.
  • Detailed electrode preparation and alignment instructions ensure optimized signal acquisition.

Main Results

  • Significant reductions in gamma band power were observed following administration of retigabine and clozapine.
  • Four aminopyridine administration resulted in increased gamma band power and coherence in the targeted brain areas.
  • Findings underscore the impact of drugs on LFP characteristics, suggesting alterations in neural communication.

Conclusions

  • This study demonstrates a valuable approach to investigate the effects of pharmacological agents on local field potentials.
  • Insights gained could inform understanding of cognitive functions and interregional brain connectivity.
  • The protocol holds promise for future studies exploring the neuronal mechanisms underlying cognition and pharmacological influences.

Frequently Asked Questions

What are the advantages of using this custom recording device?
This device is designed to be low-cost and ultra-light, making it ideal for cognitive research in mice while ensuring high-signal noise ratios.
How are the electrodes implanted in the mouse?
Electrodes are surgically implanted following a specific protocol that includes anesthetizing the mouse, making incisions, and careful placement according to anatomical landmarks.
What types of data are collected using this protocol?
The protocol allows for the collection of local field potentials from specific brain areas, providing insights into neural communication and the effects of pharmacological agents.
How can this method be adapted for other studies?
The custom design can be modified to include different electrode configurations or to study other brain regions, making it versatile for various research questions.
What limitations should researchers consider when using this protocol?
Researchers should consider the need for precision in electrode placement and the effects of anesthesia on neural activity during data collection.
How does this study contribute to understanding cognitive processes?
By revealing how drug administration affects local field potentials, this study enhances understanding of the neural mechanisms underlying cognitive processes in the brain.
What role do local field potentials play in neuroscience research?
Local field potentials are essential for studying synaptic interactions and brain communication, providing a window into the functional state of neural circuits.

이 프로토콜은 국소 자기장 전위를 기록하고 쥐 해마와 전전두엽 피질의 정보 흐름을 조사하기 위해 맞춤형으로 설계된 기록 장치와 전극의 사용을 간략하게 설명합니다.

이 연구는 쥐 해마와 전전두엽 피질에서 이중 전극 LFP 기록을 수행하여 이러한 영역의 LFP 특성에 대한 약물의 영향을 조사하기 위한 포괄적인 프로토콜을 제시합니다. 이 프로토콜은 생쥐의 인지 연구에 완전히 최적화된 저가형 초경량 뇌 신호 기록 장치를 제공합니다. 이 연구는 서로 다른 뇌 영역에서 높은 신호-잡음 비율로 신호를 기록하는 수단을 제공하여 뇌 내 지역 간 정보 통신에 대한 연구를 용이하게 합니다.

View the full transcript and gain access to thousands of scientific videos

Sign In Start Free Trial

Explore More Videos

이달의 JoVE 204호

Related Videos

급성 Hippocampal 슬라이스에 Synaptically-evoked Astroglial와 Neuronal 응답의 듀얼 Electrophysiological 레코딩

16:38

급성 Hippocampal 슬라이스에 Synaptically-evoked Astroglial와 Neuronal 응답의 듀얼 Electrophysiological 레코딩

Related Videos

27.9K Views

Mouse Hippocampal-Entorhinal Cortex Slices의 국소장전위(Local Field Potential in Mouse Hippocampal-Entorhinal Cortex Slices) 기록

02:44

Mouse Hippocampal-Entorhinal Cortex Slices의 국소장전위(Local Field Potential in Mouse Hippocampal-Entorhinal Cortex Slices) 기록

Related Videos

911 Views

마우스 해마의 세타 진동에 대한 시험관 내 기록

02:39

마우스 해마의 세타 진동에 대한 시험관 내 기록

Related Videos

572 Views

해마의 Organotypic 조각의 쌍으로 전체 셀 녹음

09:23

해마의 Organotypic 조각의 쌍으로 전체 셀 녹음

Related Videos

15.4K Views

뇌 조직에서 측정 세포 외 이온의 신호에 대한 두 번 질주과 동심 미소 전극

11:08

뇌 조직에서 측정 세포 외 이온의 신호에 대한 두 번 질주과 동심 미소 전극

Related Videos

14.3K Views

깨어 마우스의 신경 활성 물질의 Microiontophoretic 응용 프로그램과 결합하여 신경 활동의 세포 외 기록

11:19

깨어 마우스의 신경 활성 물질의 Microiontophoretic 응용 프로그램과 결합하여 신경 활동의 세포 외 기록

Related Videos

10.5K Views

행동 하는 쥐의 해 마에서 진동 제한 공간 기록

07:10

행동 하는 쥐의 해 마에서 진동 제한 공간 기록

Related Videos

9.3K Views

마우스의 보조 모터 피질에서 양측 지역 필드 전위 기록을 가진 반구 측면화의 평가

07:03

마우스의 보조 모터 피질에서 양측 지역 필드 전위 기록을 가진 반구 측면화의 평가

Related Videos

7.2K Views

전기 생리학 필드 기록에 의하여 인터라멜라 해마 CA1에 있는 장기 시냅스 가소성 조사

14:27

전기 생리학 필드 기록에 의하여 인터라멜라 해마 CA1에 있는 장기 시냅스 가소성 조사

Related Videos

13.4K Views

성인 마우스의 덴테이트 자이루스에서 전신 기록 및 신경 재건을위한 등산 해마에서 급성 슬라이스의 준비

10:45

성인 마우스의 덴테이트 자이루스에서 전신 기록 및 신경 재건을위한 등산 해마에서 급성 슬라이스의 준비

Related Videos

8.3K Views

JoVE logo
Contact Us Recommend to Library
Research
  • JoVE Journal
  • JoVE Encyclopedia of Experiments
  • JoVE Visualize
Business
  • JoVE Business
Education
  • JoVE Core
  • JoVE Science Education
  • JoVE Lab Manual
  • JoVE Quizzes
Solutions
  • Authors
  • Teaching Faculty
  • Librarians
  • K12 Schools
  • Biopharma
About JoVE
  • Overview
  • Leadership
Others
  • JoVE Newsletters
  • JoVE Help Center
  • Blogs
  • JoVE Newsroom
  • Site Maps
Contact Us Recommend to Library
JoVE logo

Copyright © 2026 MyJoVE Corporation. All rights reserved

Privacy Terms of Use Policies
WeChat QR code