| Literature DB >> 32094292 |
Parley P Belsey1, Mark A Nicholas1, Eric A Yttri2,3.
Abstract
To make full use of optogenetic and molecular techniques in the study of motor control, rich behavioral paradigms for rodents must rise to the same level of sophistication and applicability. We describe the layout, construction, use and analysis of data from joystick-based reaching in a head-fixed mouse. The step-by-step guide is designed for both experienced rodent motor labs and new groups looking to enter into this research space. Using this platform, mice learn to consistently perform large, easily-quantified reaches, including during a two-armed bandit probabilistic learning task. The metrics of performance (reach trajectory, amplitude, speed, duration, and inter-reach interval) can be used to quantify behavior or administer stimulation in closed loop with behavior. We provide a highly customizable, low cost and reproducible open-source behavior training platform for studying motor control, decision-making, and reaching reaction time. The development of this software and hardware platform enables behavioral work to complement recent advances in rodents, while remaining accessible to smaller institutions and labs, thus providing a high-throughput method to study unexplored features of action selection, motivation, and value-based decisions.Entities:
Keywords: decision-making; high-throughput; mouse; operant; reaching; rodent
Mesh:
Year: 2020 PMID: 32094292 PMCID: PMC7131984 DOI: 10.1523/ENEURO.0523-19.2020
Source DB: PubMed Journal: eNeuro ISSN: 2373-2822
Figure 1.Reaching setup and performance. , Training platform hardware is adjustable and customizable to task demands. , Mice can perform reaching tasks in behavioral boxes and with minimal space usage. Reward water is dispensed through a solenoid circuit based on task parameters and mouse performance, monitored online with an Arduino. Joystick is positioned ∼2 cm directly below mouse’s eyes. , Amplitude (top) and outward velocity (bottom) traces from a trained mouse performing the basic center-out task. , Data processing flow for a sample reach. Measured joystick positions sampled over time are assembled into reach trajectories offline. The described software package identifies the reach start time and various features of each reach, including peak amplitude and duration.
Parts list for joystick build
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| ¼ -20 stainless-steel | SKT25 | Screw kit including ¼– 20 cap screw, set screws, nuts, washers | $49.00 |
| Optical breadboard | SAB0412-D | 4" × 12" × 1/2" solid aluminum optical breadboard, black anodized | $65.00 |
| Right angle mounting | ABS002 | 2" right angle mounting bracket, narrow slotted (1) | $39.00 |
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| 0.34" ID, 0.875" OD | 93490A030 | Bronze washer for 5/16" screw size, | $5.70 |
| 1/16" ID, 1/8" OD | 6516T11 | Tygon PVC clear tubing 1/16" ID, 1/8" OD, 25 ft length | $5.75 |
| 1/16" brass wire | 8859K511 | Ultra-formable 260 brass 1 foot long | $2.03 |
| Loc-Line | 10095K97 | Loc-Line coolant hose 1/4" trade size, female × male, 5 feet long | $28.20 |
| Male Luer lock 1/8" ID | 51525K291 | Plastic quick-turn tube coupling | $5.24 |
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| Kinematic base | KB2X2 | 2" × 2" kinematic base, top and | $83.39 |
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| Miniature 2 axis hall | TS1-1-R-R-1-BK | TS1, stepped cap, round limiter, rear mount, 0-5 v, black | $75.00 |
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| 3-Port Ported: Conventional | LHDA1233115H |
| $74.00 |
| 30-ml syringes | Description: |
| $25.84 |
| 50-ml | 14-432-22, case of 500 |
| $379.25 |
| Battery clip | 9-V clip on type battery snap connector lead wire plastic head, 10 pieces |
| $6.99 |
| 1K diodes | 1N5408 rectifier diode 3 A |
| $6.91 |
| Electrical | BB400 solderless plug-in |
| $5.90 |
| Elegoo | Elegoo EL-CB-001 UNO R3 |
| $10.86 |
| Heat shrink | WindyNation 1/8" 20 Feet Black 3:1 Dual Wall Adhesive Glue Lined Marine Grade Heat Shrink Tube Tubing |
| $16.99 |
| Jumper cables | 40 pin male to female, 40 pin male to male, 40 pin female to female breadboard jumper wire ribbon Dupont cables kit, 120 pieces |
| $7.99 |
| Item: | Description: | Website: | Price: |
| LCD screen | LGDe home IIC/I2C/TWI LCD 1602 16 × 2 serial interface adapter module blue backlight for Arduino UNO R3 MEGA2560 (2 pack) |
| $9.59 |
| MicroSD card | MicroSD card 32GB,AUAMOZ microSDHC class 10 UHS-I high-speed memory card for phone, tablet, and PCs, with adapter (2 pack) |
| $16.12 |
| MicroSD card reader | SenMod 5PCS microSD card microSDHC mini TF card adapter reader module for Arduino |
| $8.29 |
| RJ11 | C2G/cables to Go 02970 RJ11 modular telephone cable, silver (7 feet, 2.13 m) |
| $3.47 |
| 60-V | Major brands TIP120. transistor, Darlington, NPN, 60 V, 5 A, 3-pin, 3+ Tab, TO-220, |
| $5.99 |
Parts, prices, and vendors are included for the joystick build. Approximate cost of one setup: $440. PDF of step by step build instructions for creating the joystick training platform are available in Extended Data 1.
Figure 2., Peak amplitude, , reach duration, , inter-reach interval (IRI) for the first 50 trials performed in each session during weeks 3, 5, and 7. Inter-trial interval, shown in light grey, is set at 3 seconds in the basic task, and is included in IRI plot shown above.
Figure 3.Training and performance of specialized reaching tasks. , The mouse joystick enables (1) a basic center-out task (all directions rewarded, dashed ring = reward amplitude threshold), (2) variable amplitude reaching wherein the reward amplitude can be changed within the session, (3) a reaction time task with a go-cue light, and (4) a bidirectional two-armed bandit task to assess decision-making, among other possibilities. In this case, reaches in different directions carry different reward probabilities. , To demonstrate the ability to make discrete reaches in two directions, we demonstrate an x-y joystick position trace over a 30 min, two-armed bandit task session wherein the high probability rewarded direction changed with throughout the task. The solid black circle denotes initial training threshold for rewarded reaches at 0.35 cm, and dashed circle representing expert level threshold of 0.9 cm. , Mean number of rewarded reaches (top) and reward threshold amplitude for each session performed by light early (green), light late (blue), and control (black) groups. , Average of median reaction times for each session during light early and light late groups, aligned to cued light introduction session.