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https://edspace.american.edu/openbehavior/project/3d-printed-headcap-microdrive/
Portal provides novel head cap and microdrive design for chronic multi electrode recordings in rats through use of 3D printing technology. Head cap and microdrive designs can be fabricated at little cost using consumer grade 3D printers.
Proper citation: 3D Printed Headcap and Microdrive (RRID:SCR_021595) Copy
https://edspace.american.edu/openbehavior/project/multicam-headmount/
Portal provides system of two multi camera head mounts for mice in order to record physiological changes in certain behaviors. System used for video tracking of rodents behavior.
Proper citation: A Head Mounted Multi Camera System for Freely Moving Mice project (RRID:SCR_021591) Copy
https://edspace.american.edu/openbehavior/project/microwave-based-homecage-motion-detector/
Portal provides radar based motion detector for home cage activity monitoring in mice. System is used for motion detection without visual contact to animal and can be used with various cage types. Features custom printed circuit board and motion detector shield for Arduino, which saves raw activity and timestamped data in CSV files onto SD card.Developed by Max Planck Institute of Psychiatry scientists. Authors also provide Python script for data analysis and generation of actograms.
Proper citation: Microwave based Homecage Motion Detector project (RRID:SCR_021590) Copy
Portal provides open source lickometer that utilizes readily available or customizable components such as PC sound card and 3D printed drinking bottle holder. System consists of apparatus itself and open source software to collect and analyze data. Recording of raw data is handled by Audacity, open source audio program.
Proper citation: An Opensource lickometer and microstructure analysis program (RRID:SCR_021589) Copy
https://edspace.american.edu/openbehavior/project/pried/
Portal provides open Source 3-D Printed Modular micro drive system for acute primate neurophysiology.
Proper citation: PRiED (RRID:SCR_021586) Copy
https://edspace.american.edu/openbehavior/project/automated-home-cage-functional-imaging/
Portal provides automated system for mesoscopic functional imaging that allows subjects to self initiate head fixation and imaging within home cage. Developed by University of British Columbia scientists. System for automated head fixation within mouse home cages.
Proper citation: Automated Home-Cage Functional Imaging project (RRID:SCR_021567) Copy
https://edspace.american.edu/openbehavior/project/dual-port-lick-detector/
Project related to measuring licking behavior in mice.System includes device used for both real time measurement and manipulation of licking behavior in head fixed mice. System provides distribution package for Dual Port Lick Detector.Package includes files relevant to building lick detector.
Proper citation: Dual port Lick Detector project (RRID:SCR_021454) Copy
https://edspace.american.edu/openbehavior/project/cerebro/
Project related to wireless controlled optogenetic stimulation. Provides system for wireless optogenetic stimulation developed in Karpova Lab with ability to be customized.Features Cerebro,rechargeable, battery powered wireless receiver;head implant containing optical fibers and two independent laser diodes; base station for transmitting radio signals to Cerebro, controlled by Windows computer via USB or by TTL; charging dock; and Xavier, user friendly GUI for sending and logging base station commands.
Proper citation: Cerebro Wireless Optogenetic System project (RRID:SCR_021474) Copy
https://edspace.american.edu/openbehavior/project/4-port-nose-poke/
Portal provides open source nose poke system utilizing Arduino microcontroller, several low cost electronic components, and PVC behavioral arena. System developed by University of Basel scientists for use in behavior experiments.
Proper citation: 4 Port Nose Poke (RRID:SCR_021592) Copy
https://edspace.american.edu/openbehavior/project/open-source-platform-sensory-tasks/
Project related to report animal decision in response to stimulus.Includes software tool as Arduino and Python based platform for Go or No Go sensory task to report animal decision in response to stimulus provided by University of Melbourne, Melbourne, VIC, Australia scientists.
Proper citation: Open Source platform for Sensory Tasks project (RRID:SCR_021468) Copy
https://edspace.american.edu/openbehavior/project/compass/
Non invasive, infrared activity and sleep measurement system that uses passive infrared sensors and Arduino microprocessor. Publication provides protocol for assembling COMPASS as well as provides support protocols and python scripts for data analysis, best practices for optimum results, troubleshooting, and alternative protocols for different use scenarios.
Proper citation: COMPASS (RRID:SCR_022329) Copy
https://edspace.american.edu/openbehavior/project/tetrodrive/
3D printed microdrive for electrophysiology and optophysiology. Consists of main body and head. Used for in vivo tetrode recording, optical imaging, and optogenetic manipulation in freely moving mice.Design files and build instructions for this device can be found on TetrODrive GitHub.Microdrive can be assembled in 15 min and price for all materials, including 3D printer, is lower than single commercial microdrive.
Proper citation: TetrODrive (RRID:SCR_022326) Copy
https://edspace.american.edu/openbehavior/project/pyos-5/
Open source operant box system optimized for use with tethered animals. System includes hardware and software. Control electronics are build on pyControl, controlling custom PCB integrating 5 infra-red break-beam sensors and 5 stimulus LEDs, single nose-poke for reward receptacle, stepper motor for control of custom peristaltic pump for reward delivery, audio board for tone generation through attached speaker, house light and fan, LED driver for optogenetic stimulation, and bidirectional communication with external devices via TTL pulses.
Proper citation: pyOS-5 project (RRID:SCR_022335) Copy
https://edspace.american.edu/openbehavior/project/mri-compatible-microdrive/
MRI compatible microdrive that can precisely position electrodes without causing significant imaging artifacts.
Proper citation: MRI Compatible Microdrive (RRID:SCR_022352) Copy
https://edspace.american.edu/openbehavior/project/neonatal-stereotax/
3D printed device for stereotaxic viral delivery into brains of neonatal mice.Used for stable and precise stereotaxic surgery in neonatal mice.
Proper citation: Neonatal Stereotaxic Mouse Adaptor (RRID:SCR_022349) Copy
https://edspace.american.edu/openbehavior/project/led-matrix-stimuli/
Open source device consists of three LED matrices that can be independently controlled via open source Arduino Uno microcontroller. Matrices of LEDs are mounted above nose pokes to examine perceptual decision making in rats. Highly modifiable LED matrices for visual stimulus presentation in behavioral studies.Designs for printing these accessory devices are available in GitHub account for the project.
Proper citation: LED Matrix Stimuli (RRID:SCR_022345) Copy
https://edspace.american.edu/openbehavior/project/clara/
Closed loop automated reaching apparatus for interrogating complex motor behaviors.Mechanical components include behavior box, series of cameras, and food pellet dispenser. Single workstation computer manages cameras, communicates with microcontroller, and analyzes mouse behavior in real time using modules extracted from DeepLabCut. Integrates fully automated, markerless kinematic tracking of multiple features to classify animal behavior and delivers neural stimulation based on behavioral outcomes. CLARA is compatible with advanced neurophysiological tools, enabling testing of neurostimulation devices and identification of novel neurological biomarkers.System fully automates trial initiation and pellet delivery and is capable of accurately delivering stimulation in response to trial outcome with short latency.
Proper citation: Closed Loop Automated Reaching Apparatus (RRID:SCR_022365) Copy
https://edspace.american.edu/openbehavior/project/frost/
Open source system built around Arduino based microcontroller for analog and digital input and synchronization combined with custom printed circuit board. Hardware and Arduino-based firmware used to synchronize experimental and electrophysiological data.
Proper citation: Florida research open source synchronization tool (RRID:SCR_022344) Copy
https://edspace.american.edu/openbehavior/?s=pyPhotometry
Open source Python based hardware and software for fiber photometry data acquisition. System includes compact, low cost, data acquisition board built around Micropython microcontroller, and cross platform graphical user interface for controlling acquisition and visualising signals. Can acquire two analog and two digital signals, and control two external LEDs via built in LED drivers. Time division multiplexed illumination allows independent readout of fluorescence evoked by different excitation wavelengths from single photoreceiver signal.
Proper citation: pyPhotometry (RRID:SCR_022940) Copy
https://github.com/MatsumotoJ/usvcam
Open source acoustic camera system for measuring ultrasound communication in rodents. System includes small phased microphone array combined with camera and comprises USV segmentation algorithms with modification for overlapping vocalizations that results in high accuracy. Enables simpler and faster USV localization and assignment.
Proper citation: USVCAM (RRID:SCR_022747) Copy
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