{"schema_version":1,"experiment_id":"eoa_inverse_innovation_exp04_retrieval_first_paired20_20260802","cell_id":"negative_space_design__neuroscience","hypothesis_id":"H2","search_queries":["intracranial EEG software hide channels display selected channels seizure review workstation","epilepsy EEG review software channel selection hide channels montage localization seizure onset","patent EEG display selected channels seizure onset visualization","human factors EEG display channel reduction seizure onset localization","Natus NeuroWorks EEG review hide selected channels montage user manual","Persyst EEG review selected channels montage hide channels","BESA Research hide channels EEG display selected channels manual","SEEG visualization software selected channels seizure onset review EPINETLAB"],"sources":[{"source_id":"PA1","title":"Review — BESA Research documentation","publisher":"BESA GmbH","url":"https://wiki.besa.de/index.php?title=Review","source_class":"OFFICIAL_PRODUCT_DOCUMENTATION","claims_supported":["BESA Research can show or hide scalp, polygraphic, and intracranial channel groups.","Its review interface supports displaying a selected subset of a channel group, reports the selected-versus-total channel count, and provides an All-channels control.","This substantially overlaps reversible channel clearing in multichannel electrophysiology review."]},{"source_id":"PA2","title":"NeuroWorks 9 User and Service Manual","publisher":"Natus Medical Incorporated; mirror hosted by Scribd","url":"https://www.scribd.com/document/989717501/Manual-NeuroWorks-9","source_class":"OFFICIAL_PRODUCT_DOCUMENTATION","claims_supported":["The documented Trace commands include Show Selected, Hide Selected, and Show All.","Show Selected leaves only highlighted channels visible, while hidden channels continue recording data.","Channel sets are expressly intended for recordings with too many channels to display effectively at once, and custom channel labels remain visible beside traces."]},{"source_id":"PA3","title":"Natus NeuroWorks EEG Software","publisher":"Natus Medical Incorporated","url":"https://natus.com/neuro/neuroworks-eeg-software/","source_class":"COMMERCIAL_FIRST_PARTY","claims_supported":["NeuroWorks is marketed for clinical EEG and long-term scalp and intracranial epilepsy monitoring.","Supported intracranial configurations extend to 256 channels, placing the documented selection and restoration controls within the hypothesis's high-channel-count clinical context."]},{"source_id":"PA4","title":"Effects of a reduction of the number of electrodes in the EEG montage on the number of identified seizure patterns","publisher":"Clinical Neurophysiology Practice","url":"https://pmc.ncbi.nlm.nih.gov/articles/PMC8930978/","source_class":"PRIMARY_RESEARCH","claims_supported":["Two experts compared full and eight-lead views of 95 seizure and 95 control sequences.","Reduced-montage seizure sensitivity was 0.65 versus 0.76 with the full montage, and localization agreed with the original assessment less often under the reduced view.","Misses occurred across generalized, frontal, central, temporal, and parietal patterns, supporting the proposed distributed-onset safety endpoint."]},{"source_id":"PA5","title":"Inadequacy of standard screen resolution for localization of seizures recorded from intracranial electrodes","publisher":"Epilepsia; PubMed record","url":"https://pubmed.ncbi.nlm.nih.gov/15509247/","source_class":"PRIMARY_RESEARCH","claims_supported":["A clinical case report documents false intracranial seizure-onset localization caused by an unsuitable time-per-screen display.","It establishes that display configuration can materially alter visual onset localization, although it addresses temporal resolution rather than channel crowding."]},{"source_id":"PA6","title":"EPINETLAB: A Software for Seizure-Onset Zone Identification From Intracranial EEG Signal in Epilepsy","publisher":"Frontiers in Neuroinformatics","url":"https://www.frontiersin.org/journals/neuroinformatics/articles/10.3389/fninf.2018.00045/pdf","source_class":"PRIMARY_RESEARCH","claims_supported":["EPINETLAB supports presurgical seizure-onset-zone assessment from intracranial EEG.","Its interface displays iEEG channels in groups smaller than the original sample specifically to improve multichannel visualization.","It also ranks informative channels and applies subsequent processing to relevant channel subsets, closely neighboring candidate-channel focusing."]},{"source_id":"PA7","title":"American Clinical Neurophysiology Society Guideline 3: A Proposal for Standard Montages to Be Used in Clinical EEG","publisher":"American Clinical Neurophysiology Society","url":"https://www.acns.org/UserFiles/file/EEGGuideline3Montage.pdf","source_class":"OFFICIAL_GUIDANCE","claims_supported":["ACNS recommends at least 16 simultaneous channels, use of the full 21-electrode placement, clearly identified derivations, and both bipolar and referential montages for clinical interpretation.","The guideline simultaneously values adequate spatial coverage and simple, readily comprehended montages, defining the safety tension the hypothesis must manage."]},{"source_id":"PA8","title":"US20200178832A1 — Seizure onset zone localization","publisher":"United States Patent and Trademark Office; Google Patents record","url":"https://patents.google.com/patent/US20200178832A1/en","source_class":"GOVERNMENT_OR_REGULATOR","claims_supported":["The patent classifies intracranial EEG channels by likelihood of proximity to an epileptogenic region and visualizes classifications on a spatial brain model.","It describes selecting a subset of abnormal channels for subsequent seizure monitoring.","It overlaps candidate-channel prioritization and location-context preservation but concerns automated interictal localization and prediction, not reversible human review of ictal onset epochs."]}],"proximity":"SUBSTANTIAL_COLLISION","closest_analogues":[{"name":"NeuroWorks Show Selected / Hide Selected / Show All workflow","similarity":"The documented clinical EEG interface already performs the central interaction: retain the underlying recording, temporarily display selected channels only, and restore all waveforms immediately; the product is used for high-channel-count intracranial epilepsy monitoring.","remaining_difference":"The opened documentation does not define candidate channels from reproducible seizure-onset evidence, require a persistent anatomical context during the focused view, or report blinded localization-agreement and distributed-onset safety outcomes.","source_ids":["PA2","PA3"]},{"name":"BESA Research subset-channel review","similarity":"BESA provides subset-versus-all display controls for intracranial channel groups, closely matching reversible channel clearing rather than physical electrode reduction.","remaining_difference":"No opened BESA documentation establishes a presurgical onset-epoch protocol or validates improved inter-rater localization without loss of distributed evidence.","source_ids":["PA1"]},{"name":"EPINETLAB grouped-channel visualization and informative-channel ranking","similarity":"EPINETLAB addresses difficult multichannel iEEG review for presurgical SOZ assessment by showing smaller channel groups and identifying informative subsets.","remaining_difference":"Its emphasis is HFO analysis, automated ranking, and computational efficiency rather than a blinded comparison of candidate-only ictal review against the full montage.","source_ids":["PA6"]},{"name":"Blinded full-versus-reduced montage review","similarity":"Experts review fewer simultaneous EEG traces and the study measures seizure detection and localization consequences relative to a full montage.","remaining_difference":"The study uses a fixed eight-lead scalp montage in pediatric monitoring, not a reversible, epoch-specific candidate-channel view of acquired intracranial data with immediate full-montage recovery.","source_ids":["PA4"]},{"name":"Patented abnormal-channel localization with spatial display","similarity":"The patent prioritizes candidate iEEG channels, preserves electrode-location information in a 2D or 3D brain display, and selects an abnormal-channel subset for further monitoring.","remaining_difference":"It automates interictal SOZ inference and seizure prediction rather than testing human review of candidate ictal-onset epochs or one-action restoration of all waveforms.","source_ids":["PA8"]}],"overlapping_components":["Selection of candidate or informative EEG channels","Temporary subset-only waveform display","Preservation of the underlying full recording","Immediate restoration or access to all channels","Explicit response to high-channel-count display crowding","Intracranial epilepsy-monitoring context","Channel labels or spatial electrode context","Comparison against a full montage","Safeguard against missed focal or distributed activity"],"remaining_contrastive_claim":"Within the opened sources, no controlled study reports a blinded presurgical iEEG workflow that combines candidate-only onset-epoch display, persistent electrode-location context, immediate full-montage restoration, and improved inter-rater onset-localization agreement without reduced detection of distributed onsets.","claim_falsifier":"A pre-existing workstation validation, patent embodiment, clinical protocol, or human-factors study documenting all four elements—candidate-only ictal review, preserved anatomical context, immediate full-view recovery, and the stated agreement plus distributed-onset comparison—would falsify the remaining contrastive claim.","problem_support":"MODERATE","recommendation":"RESEARCH","world_novelty_boundary":"No world-novelty conclusion is made. This is only a bounded ordinary-web-search assessment: it did not exhaust proprietary workstation versions, internal hospital workflows, non-English sources, paywalled full texts, patent families and prosecution histories, regulatory submissions, or unpublished studies."}