Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-09T15:34:18.732895Z
Paper Citation Record · LEDGER
As of 16 August 2026, this Paper Citation Record lists 92 of 92 outbound references and 0 inbound Pith citation observations for arXiv:2502.01382.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-09T15:34:18.732895Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-16T06:30:59.297886+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
92 of 92 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation dae8d846-e2ba-4774-b631-f2e03f792dad · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Transcranial di- rect current stimulation in the treatment of major depression: a meta- analysis
Reference 1
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Observation 48f0cead-d1df-4157-9bda-90222e4af8e0 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Effects of anodal transcranial direct current stim- ulation on chronic neuropathic pain in patients with multiple sclerosis
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Observation fc4cdd9d-9776-4aff-b1ba-efb0cc7c5786 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Suppression of seizure by cathodal transcranial di- rect current stimulation in an epileptic patient-a case report
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Observation 91e5f8df-221e-4ed5-83b4-704581029bba · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Transcranial direct current stimulation: challenges, opportunities, and impact on psychiatry and neurorehabilitation
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Non-invasive human brain stimulation in cognitive neuroscience: a primer
Reference 5
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Comparing cortical plasticity induced by conventional and high-definition 4× 1 ring tdcs: a neurophysiological study
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Observation 646874e7-45db-4dc7-8f2d-fc3f0a452714 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Multifocal tdcs targeting the resting state motor network increases cortical excitability beyond traditional tdcs targeting unilateral motor cortex
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Observation f593326f-63ff-42bf-bd35-229e864ee358 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Dmochowski, Abhishek Dutta, Marom Bikson, Yuzhuo Su, and Lucas C
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Transcranial di- rect current stimulation: five important issues we aren’t discussing (but probably should be)
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Reference 10
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Observation ef091b12-f8b6-409d-afc4-82999e1eea48 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unresolved cited work
Reference 11
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Observation d5339ad7-73bc-4c5e-99e8-60584724ca9a · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Can electric fields explain inter-individual variability in transcranial direct current stimulation of the motor cortex? Scientific reports, 9(1):626, 2019
Reference 12
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unification of optimal targeting methods in transcranial elec- trical stimulation
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Observation f1851fce-0666-4c55-b323-3d758724c9d7 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Determination of optimal electrode positions for transcra- nial direct current stimulation (tDCS)
Reference 14
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Observation e38fd945-7798-4bf6-8277-c395594c0ce2 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation A novel array-type transcranial direct current stimulation (tdcs) system for accurate focusing on targeted brain areas.IEEE Trans- actions on Magnetics , 47(5):882–885, 2011
Reference 15
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Observation cb2b1ffb-3849-467f-9ae3-44cb6d6124a4 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Vannorsdall, David J
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Using electromagnetic reciprocity and magnetic resonance current density imaging to fit multi-electrode montage for non-invasive brain stimulation
Reference 17
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Fox, Oscar Ripolles, Pedro Cavaleiro Miranda, and Alvaro Pascual-Leone
Reference 18
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Concurrency in electrical neuroinformatics: par- allel computation for studying the volume conduction of brain electrical fields in human head tissues
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Transcranial electrical neuromodulation based on the reciprocity principle
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Optimal use of eeg recordings to target active brain areas with transcranial electrical stimulation
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Observation ec7d2dd9-d0ab-40d0-a17b-1d94d5758b81 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Com- 28 putationally optimized ECoG stimulation with local safety constraints
Reference 25
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Accessibility of cortical regions to fo- cal tes: Dependence on spatial position, safety, and practical constraints
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Reference 27
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Observation 96e55954-c4c8-4e55-8ac3-ad113c3dbbe4 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Multi-objective optimization via evolutionary algorithm (movea) for high-definition transcranial electrical stimulation of the human brain
Reference 29
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Observation ea8e3139-36e7-4d0e-8e04-107ade26b804 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation McGraw-hill New York, 2000
Reference 30
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Robust enhancement of motor sequence learning with 4 ma transcranial electric stimulation
Reference 31
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Re- alistic volumetric-approach to simulate transcranial electric stimula- tion—roast—a fully automated open-source pipeline
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Observation 871178d5-3ed6-4ddb-8d18-804afc5b1c70 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Barth, and Pulkit Grover
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Observation ceb249f5-3486-44be-bc4d-c264d8cf4303 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Introduction to electrodynamics, 2005
Reference 34
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Hingeplace: Focused transcra- nial electrical current stimulation that allows subthreshold fields outside the stimulation target
Reference 35
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Perspectives on optimized transcranial electrical stimulation based on spatial electric field modeling in humans
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Biophysically realistic neuron models for simulation of cortical stimulation
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Analysis of models for external stimulation of axons
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation The basic mechanism for the electrical stimulation of the nervous system
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation A finite element method framework to model extracellular neural stim- ulation
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Observation 5d622bdb-4757-4142-ba2a-6c6d8443442b · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Parra, Jacobo D
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Transcranial electric stimulation modulates fir- ing rate at clinically relevant intensities
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Effect of focality of transcranial 30 currents on neural responses
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Stroke rehabilitation using noninvasive cortical stimulation: motor deficit
Reference 44
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HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Spatial and polarity precision of concentric high-definition transcranial direct current stimulation (hd-tdcs)
Reference 47
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Observation c3b601e8-2c77-4439-80aa-f3fd80f30b0b · outbound
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Reference 48
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Reference 56
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Reference 57
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Reference 58
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Reference 60
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Reference 61
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Reference 62
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Observation cd44a5e3-f3d5-434b-85cc-7c404bf3c4a4 · outbound
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Reference 63
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Observation 733d3e36-58d9-4577-b4ab-8b8f77e6a7a2 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Hence, (A.2) satisfies the relaxed Slater’s condition and the solution of (A.19) must satisfy its K.K.T
Reference 64
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Observation 85075a51-9db3-4aa1-8246-4cc4da8847f2 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation conditions in (A.11)-(A.16)) also are a solution of the K.K.T
Reference 65
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Observation 31990207-cea7-4a40-979f-e0709705727e · outbound
Reference 66
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Observation b60179a1-1e14-44fd-afd8-d1ca256f7b72 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Furthermore, Observe that I∗ 1 = I∗ 2, λ(1)∗ = −1/β(2), µ(1)∗ = −µ(1)∗ /β(2)∗, κ(1)∗ = −κ(1)∗ /β(2)∗,ν(1)∗ = −ν(1)∗ /β(2)∗, and δ(1)∗ = −δ(1)∗ /β(2)∗ solves the K.K.T
Reference 67
Source-reported events for the cited work
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Observation 70e0e66d-a092-4996-b386-c21a096a54a1 · outbound
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Reference 68
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Observation b6c9380f-b488-4842-badd-d6dda803f8bc · outbound
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Reference 69
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Observation 3248c23c-29cc-436f-8732-874e6f36cb4c · outbound
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Reference 70
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Observation 42d523df-5e91-46cc-8e60-83328c9eaa7a · outbound
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Reference 71
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No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 93ef944c-362e-4d2f-874d-4c3ec011190c · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation We quantified the difference betweenI∗ LCM V−E and I∗ CDM for five different tar- get locations
Reference 72
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 50f070f8-1ce8-45c9-b708-f4e510562a29 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation ∥ max{0|C|, TcI−νϵ1|C|}∥1 + ∥ max{0|C|, −TcI−νϵ1|C|}∥1
Reference 73
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation bcf1f045-76f3-484d-ad12-03cc3ed8d7b5 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unresolved cited work
Reference 74
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation de8fb3a6-e170-41f6-a727-3ce31ac98f72 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unresolved cited work
Reference 75
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 0c15ad3a-9437-4479-b88d-568d80cfe054 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation (C.27) Now note that due to (C.17), we know that ∂L(3)(I∗
Reference 76
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation b98fd4a3-710b-47a9-9fae-a2fc848f3346 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Hence, L(3)(I∗
Reference 77
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation db0079c4-9b6c-45ee-9878-9ac86903f8e3 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unresolved cited work
Reference 78
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 96228ed0-220a-4334-902b-a334ae1ce57e · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Furthermore, by the particular choice of gEdes = Tf I∗ 3, we know that I∗ 3 lies in the constraint set of (C.33)
Reference 79
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 44387eeb-21f1-4e4d-8d2b-9ab97688f2d5 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation , N}, (C.38) Tf I∗ 2 − gEdes = 0|F |
Reference 80
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 13cd8e6d-c298-42e5-94a2-8b56280ef687 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation (C.40) Let T ∈ ∂∥Tf I∗ 3 − Edes∥, b ∈ ∂∥I∗ 3∥1, and c ∈ ∂Lhinge(I∗
Reference 81
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 7b94b34b-878a-48a1-8b7a-d772d996de05 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation (C.41) Note that by (C.23), we are guaranteed the existence of at least one such T, b, and c
Reference 82
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 81779ad1-b338-4b82-acf5-9dffafa909d5 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation (C.47) We know that T ∈ ∂Lhinge(I∗
Reference 83
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation a4c0ceb7-d9d2-4a26-98d4-f7811593601b · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Hence, we can conclude that: ∂L(2)(I∗
Reference 84
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 5481e6c6-0b35-452b-92fd-1374e05f6b3b · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation (C.48) Combining (C.48) and (C.41), we can conclude that: ∂L(2)(I∗
Reference 85
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation eb542f54-dc80-4a21-9ed6-def0b2193634 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unresolved cited work
Reference 86
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation b0f953fa-f51b-471a-bc6f-172d2e327421 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unresolved cited work
Reference 87
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation be5398a2-9f21-43ab-b874-8e1121436736 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unresolved cited work
Reference 88
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 4ef1a1fb-b0bb-481c-b840-af9a98987a6c · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation 64 We quantified the difference between I∗ L1L1 and I∗ HP for five different target locations
Reference 89
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 661b35c3-b0c4-4c94-9daf-801efb267239 · outbound
Reference 90
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 7e3ecad8-51b0-47bc-88f7-7cd7afb59d8c · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation Unresolved cited work
Reference 91
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
Observation 6d074173-083c-4a86-ae90-84e390434157 · outbound
HingePlace: Harnessing the neural thresholding behavior to optimize Transcranial Electrical Stimulation sea of neurons
Reference 92
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-16T06:30:59.297886+00:00.
No inbound Pith citation observations are available.