StereoPylot: An Open-Source Raspberry Pi-Based Stereotaxic Apparatus Controller with 3D Printed Components for Fully Motorized Control, Digital Display, and Customizable Features.
The 2 matches · all tie a paragraph to a whole file, not to given lines: weak matches, whose lines are not tinted
- [1] § Materials and Methods › Assembly of the upper control box ↔ LeftHand/VariableList.py, the whole file · a weak match · score 0.53 · shift registers, rotary encoders, pins, switch, wiring, buttons
- [2] § Materials and Methods › Assembly of the upper control box ↔ RightHand/VariableList.py, the whole file · a weak match · score 0.53 · shift registers, rotary encoders, pins, switch, wiring, buttons
Paper
Loaded from Europe PMC by your browser, not stored by OSCR: doi.org · Europe PMC
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The authors' code
Python · 247 lines · 5.7 KB · GPL-3.0 · 1 match
- class var_list:
- #From UI
- countoflistwidget = 0
- list_toggle = 9999
- #FROM BUTTONCLASS *********************************************************
- #Main while loop condition
- keepalive = True
- #Stepper instances
- APmove = None
- MLmove = None
- DVmove = None
- AUXmove = None
- # OFFSETS FOR THE DRILL, Syringe, Needle (minus values is back, left or up)
- # in mm using the drill as 0
- # Change in the file offsetsXX.txt (XX is LH or RH)
- DrillAPmm = float(0)
- DrillMLmm = float(0)
- DrillDVmm = float(0)
- NeedleAPmm = float(11.1)
- NeedleMLmm = float(-31.22)
- NeedleDVmm = float(5)
- FiberAPmm = float(-5.069)
- FiberMLmm = float(31.22)
- FiberDVmm = float(1.1)
- # variable to let program know which offset of toggled on. 1-drill,2-syringe,3-probe
- TOGGLEoff = 1
- offtoggleold = 1
- # DEFINE NUMBER OF BUTTONS AND ORDER IN ARRAY
- buttonarray = ['DVinsert', 'withdrawl', 'fullretract', 'rezero', 'bregmahomeDVupfive',
- 'bregmahomeDVabs', 'ABSzero', 'gotopreset', 'makeitsobut', 'engagebut',
- 'selectdown', 'selectup', 'retractAP', 'returnAP', 'bregmahome',
- 'gotolambdabut', 'ratselect', 'mouseselect', 'functionone', 'armbut',
- 'relativeML', 'retractDV', 'returnDV', 'functiontwo', 'relativeAP',
- 'relativeALLset', 'offpostwo', 'offposone', 'unassigned', 'movefast', 'moveslow',
- 'relativeDV']
- lastbuttonstate = [0 for x in range(len(buttonarray))]
- # BUTTON POSITION IN SHIFT REGISTER ARRAY (0 to 31)
- moveslow = 30
- movefast = 29
- offposone = 27
- offpostwo = 26
- rezero = 3
- relativeAP = 24
- relativeML = 20
- relativeDV = 31
- relativeALL = 25
- fullretractbut = 2
- bregmahome = 14
- bregmahomeDVabs = 5
- bregmahomeDVupfive = 4
- gotolambdabut = 15
- ratselect = 16
- mouseselect = 17
- gotopreset = 7
- selectup = 11
- selectdown = 10
- armbut = 19
- engagebut = 9
- makeitsobut = 8
- withdrawl = 1
- DVinsert = 0
- retractAP = 12
- returnAP = 13
- retractDV = 21
- returnDV = 22
- functionone = 18
- functiontwo = 23
- ABSzero = 6
- #DEFINE EMERGENCY STOP and hard wired buttons GPIO
- emergstop = 26
- safetybut = 9
- disablestepperbut = 10
- fourthhardwarebutton = 11 #encoder 4 depress?
- #DEFINE SHIFT REGISTER PINS
- latchpin = 18
- clockpin = 23
- datapin = 24
- #DEFINE STEPPER SPEEDS - number of steps per call
- finespeed = 1
- normalspeed = 10
- fastspeed = 50
- #stepper_speed initializes as 1 BUT changes according to the state of the speed switch
- stepper_speed = finespeed
- #FROM StepperControl class *********************************************************
- btnSteps = 0.001
- APsteps = 0
- MLsteps = 0
- DVsteps = 0
- AUXsteps = 0
- APrelpos = 0
- MLrelpos = 0
- DVrelpos = 0
- APretractstart = 0
- DVretractstart = 0
- DVinitREL_holdvalue = 0
- MLinitREL_holdvalue = 0
- APinitREL_holdvalue = 0
- DVcurrentoffsset = 0
- MLcurrentoffsset = 0
- APcurrentoffsset = 0
- APstepdistance = float(0.0075)
- MLstepdistance = float(0.0075)
- DVstepdistance = float(0.0075)
- APcurABSdist = float(0)
- MLcurABSdist = float(0)
- DVcurABSdist = float(0)
- APcurRELdist = float(0)
- MLcurRELdist = float(0)
- DVcurRELdist = float(0)
- #FROM Threadedcontrol class *********************************************************
- #Variables that may need tweaking
- calibrationsteps = 4000
- backoff = 50 #200
- APadvance = 2000 #2000
- DVadvance = 400 #400
- MLadvance = 400 #400
- APworking = 6400
- MLworking = 6070
- DVworking = 3500
- fullretract = 7650
- fullretractML = 9500
- DVup_bregramhome = 268 #about 0.2cm
- DVup_lambdabregma = 200 # about 0.15cm
- DVup_five = 675 # about 5 mm
- # how many steps DV goes up and then back when changing the offsets to avoid scrapping the skull
- DVup_OffsetSafety = 1340 #about 1 cm
- #DEFINE STEPPER CONTROL PINS
- enableAll = 2
- directionAP = 3
- stepAP = 4
- directionML = 17
- stepML = 27
- directionDV = 5
- stepDV = 6
- directionAUX = 1
- stepAUX = 7
- #DEFINE LIMIT SWITCH PINS
- limitAP = 22
- limitML = 19
- limitDV = 0
- limitAUX = 13
- #DEFINE ROTARY ENCODER PINS
- rotoA_AP = 21
- rotoB_AP = 20
- rotoA_ML = 12
- rotoB_ML = 16
- rotoA_DV = 8
- rotoB_DV = 25
- rotoA_fourth = 14
- rotoB_fourth = 15
- #ENCODER CALC VARIABLES
- eventime = 0
- eventdelay = 200
- backwardrotdelay = 400
- lastdirection = 0 #3 = counterclock, 1 = clock
- thecount = 0
- firstandonly = 0
- #DEFINE STEPPER DIRECTIONS
- APback = 1
- APforward = 0
- MLleft = 1
- MLright = 0
- DVup = 0
- DVdown = 1
- AuxUP = 0
- AuxDown = 1
- calibfilename = 'CalibrationLH.txt'
- offsetfilename = 'offsetsLH.txt'
- lastenablestate = 1
- emergencystopflag = 0
- engagebutton = 0
- safetybutton = 0
- withdrawinsertstop = 0
- dvinsertstop = 0
- DVinsertindicator = 0
- Withdrawlindicator = 0
- Makeitsoindicator = 0
- ratormouseselect = 1 #1 is mouse 2 is rat 3 is null(mouse default)
- ratlambda = 1208 # steps for 9mm at 0.0745 per step
- mouselambda = 550 # steps for 4.1mm at 0.0745 per step
- rellambda = 0
- # For timerthread safety timeouts
- timeoutlength = 3
- DVinserttimeouttime = None
- Safetytimeouttime = None
- Withdrawltimeouttime = None
- Makeitsobuttimeouttime = None
- # concept and code created by Kirk Mulatz (original code https://github.com/bustenchops/Stereotaxiccontrol (experiment branch)
VariableList.py at commit db7209a, under GPL-3.0 · at the source
Overview
Abstract
Stereotaxic surgery is a powerful technique used to deliver drugs, viral vectors, and/
Reproduced under the paper's license (CC BY), from the paper cited above.
Repository
Its files are read in the Code ↔ Paper reader above, with 2 matches between paragraphs and lines of code.
botterillneurolab/StereoPylot
db7209a313dc6a21e145f5616096a121ed564a92, 23 April 2026Availability: 1 check, the latest on 27 September 2026: the link answers
- 27 September 2026: the link answers
22 files
- LeftHand/
Buttonclassv1.py , Python, 679 lines - LeftHand/
RotatryEncoderv1.py , Python, 164 lines - LeftHand/
StepperControlv1.py , Python, 196 lines - LeftHand/
StereotaxicUI.py , Python, 442 lines - LeftHand/
SurgeryStart.sh , Shell, 18 lines - LeftHand/
ThreadedControlsv1.py , Python, 431 lines - LeftHand/
VariableList.py , Python, 247 lines, 1 match - RightHand/
Buttonclassv1-old.py , Python, 539 lines - RightHand/
Buttonclassv1.py , Python, 679 lines - RightHand/
RotatryEncoderv1.py , Python, 164 lines - RightHand/
StepperControlv1.py , Python, 196 lines - RightHand/
StereotaxicUI.py , Python, 440 lines - RightHand/
SurgeryStart.sh , Shell, 18 lines - RightHand/
ThreadedControlsv1.py , Python, 431 lines - RightHand/
VariableList.py , Python, 184 lines, 1 match - TestingFunction/
rotary_classv2.py , Python, 189 lines - TestingFunction/
test-buttons-PCB.py , Python, 96 lines - TestingFunction/
test-hardbuttons-PCB.py , Python, 77 lines - TestingFunction/
test-input-PCB.py , Python, 48 lines - TestingFunction/
test-steppersv3.py , Python, 352 lines - TestingFunction/
testvariables.py , Python, 9 lines - LICENSE, License, 674 lines
Code accessibility
The code and software described in the paper is freely available online at https://
Reproduced under the paper's license (CC BY), from the paper cited above.
Tracing map
Proposed by the machine: these links were found in the paper and verified at the source, without human review. The map will receive a Zenodo DOI once one of the paper's authors has validated it with their ORCID.
What the map holds:
- 1 repository of the authors' code, each at its verified commit, with its license and how the link was found in the paper;
- 21 scripts, each with its path and the digest of its content;
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Data
No dataset and no data link were found in the paper.
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Version 1, 27 September 2026: the first record
Recorded: type, language, journal, volume, issue, pages, dates, 6 authors, 7 keywords, 8 MeSH terms, 2 funders, 24 references.
Cite
This paper
Mulatz, K., Glass, A. E., Bolger, M. A., White, C. L. G., Howland, J. G., & Botterill, J. J. (2026). StereoPylot: An Open-Source Raspberry Pi-Based Stereotaxic Apparatus Controller with 3D Printed Components for Fully Motorized Control, Digital Display, and Customizable Features. eNeuro, 13(7), ENEURO.0460-25.2026. https://
BibTeX
@article{mulatz2026stere
author = {Mulatz, Kirk and Glass, Aiden E. and Bolger, McKenna A. and White, Caleb L. G. and Howland, John G. and Botterill, Justin J.},
title = {{StereoPylot: An Open-Source Raspberry Pi-Based Stereotaxic Apparatus Controller with 3D Printed Components for Fully Motorized Control, Digital Display, and Customizable Features}},
journal = {eNeuro},
year = {2026},
month = jul,
volume = {13},
number = {7},
pages = {ENEURO.0460--25.2026},
publisher = {Society for Neuroscience},
issn = {2373-2822},
doi = {10.1523/
url = {https://
pmid = {42331622},
pmcid = {PMC13362190}
}
RIS
TY - JOUR
AU - Mulatz, Kirk
AU - Glass, Aiden E.
AU - Bolger, McKenna A.
AU - White, Caleb L. G.
AU - Howland, John G.
AU - Botterill, Justin J.
TI - StereoPylot: An Open-Source Raspberry Pi-Based Stereotaxic Apparatus Controller with 3D Printed Components for Fully Motorized Control, Digital Display, and Customizable Features
T2 - eNeuro
J2 - eNeuro
PY - 2026
DA - 2026/
VL - 13
IS - 7
SP - ENEURO.0460
EP - 25.2026
SN - 2373-2822
PB - Society for Neuroscience
DO - 10.1523/
UR - https://
LA - en
ER -
CSL-JSON
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"container-title": "eNeuro",
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