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dandiset.yaml 2.7 KB

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  1. '@context': https://raw.githubusercontent.com/dandi/schema/master/releases/0.6.7/context.json
  2. about: []
  3. access:
  4. - schemaKey: AccessRequirements
  5. status: dandi:OpenAccess
  6. assetsSummary:
  7. numberOfBytes: 0
  8. numberOfFiles: 0
  9. schemaKey: AssetsSummary
  10. citation: Silkuniene, Giedre; Silkunas, Mantas; Pakhomov, Andrei (2025) Optimizing
  11. NG-CanCan Protocol Delivery with MHz Compression to Minimize Near-Electrode Ablation
  12. (Version draft) [Data set]. DANDI Archive. https://dandiarchive.org/dandiset/001047/draft
  13. contributor:
  14. - affiliation: []
  15. email: giedre.silkuniene@gmail.com
  16. identifier: 0000-0001-8436-9718
  17. includeInCitation: true
  18. name: Silkuniene, Giedre
  19. roleName:
  20. - dcite:ContactPerson
  21. schemaKey: Person
  22. - identifier: 0000-0002-4568-9265
  23. includeInCitation: true
  24. name: Silkunas, Mantas
  25. schemaKey: Person
  26. - identifier: 0000-0003-3816-3860
  27. includeInCitation: true
  28. name: Pakhomov, Andrei
  29. roleName:
  30. - dcite:ProjectLeader
  31. schemaKey: Person
  32. - awardNumber: 1R21EY034258
  33. includeInCitation: false
  34. name: National Institutes of Health
  35. roleName:
  36. - dcite:Funder
  37. schemaKey: Organization
  38. - identifier: 0000-0002-0302-1355
  39. name: Semenov, Iurii
  40. schemaKey: Person
  41. - identifier: 0000-0003-4950-4130
  42. name: Pakhomova, Olga
  43. schemaKey: Person
  44. dateCreated: '2024-06-04T17:21:04.141576+00:00'
  45. description: This study advanced the Next Generation (NG) CanCan protocols by implementing
  46. MHz compression for electric pulse packet delivery. Packets were delivered at 0.2
  47. MHz, and the compression significantly reduced near-electrode cell ablation compared
  48. to delivery at 1 Hz, while preserving effects at the center. The experiments used
  49. a four-electrode array, with YoPro-1 to evaluate cell permeabilization and Propidium
  50. Iodide to assess cell death two hours post-delivery. This work was supported by
  51. NIH grant 1R21EY034258.
  52. ethicsApproval: []
  53. id: DANDI:001047/draft
  54. identifier: DANDI:001047
  55. license:
  56. - spdx:CC-BY-4.0
  57. manifestLocation:
  58. - https://api.dandiarchive.org/api/dandisets/001047/versions/draft/assets/
  59. name: Optimizing NG-CanCan Protocol Delivery with MHz Compression to Minimize Near-Electrode
  60. Ablation
  61. relatedResource:
  62. - identifier: doi.org/10.1016/j.bioelechem.2025.109016
  63. name: MHz compression of pulse packets facilitates remote focusing of electroporation
  64. relation: dcite:IsPublishedIn
  65. resourceType: dcite:JournalArticle
  66. schemaKey: Resource
  67. url: https://doi.org/10.1016/j.bioelechem.2025.109016
  68. repository: https://dandiarchive.org
  69. schemaKey: Dandiset
  70. schemaVersion: 0.6.7
  71. url: https://dandiarchive.org/dandiset/001047/draft
  72. version: draft
  73. wasGeneratedBy:
  74. - identifier: NIH 1R21EY034258
  75. name: Targeted Neuromodulation by Nanosecond Pulsed Electric Fields
  76. schemaKey: Project
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