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  1. '@context': https://raw.githubusercontent.com/dandi/schema/master/releases/0.6.3/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; Kim, Vitalii; Semenov, Iurii; Pakhomov, Andrei (2023)
  11. Time kinetics of the membrane potential at the cathode- and anode-facing poles of
  12. a cell induced by a train of 5 pulses at 833 kHz (Version draft) [Data set]. DANDI
  13. archive. https://dandiarchive.org/dandiset/000448/draft
  14. contributor:
  15. - affiliation: []
  16. email: gsilkuni@odu.edu
  17. identifier: 0000-0001-8436-9718
  18. includeInCitation: true
  19. name: Silkuniene, Giedre
  20. roleName:
  21. - dcite:ContactPerson
  22. schemaKey: Person
  23. - affiliation: []
  24. identifier: 0000-0003-0699-5582
  25. includeInCitation: true
  26. name: Kim, Vitalii
  27. roleName: []
  28. schemaKey: Person
  29. - affiliation: []
  30. identifier: 0000-0002-0302-1355
  31. includeInCitation: true
  32. name: Semenov, Iurii
  33. roleName: []
  34. schemaKey: Person
  35. - affiliation: []
  36. identifier: 0000-0003-3816-3860
  37. includeInCitation: true
  38. name: Pakhomov, Andrei
  39. roleName: []
  40. schemaKey: Person
  41. - awardNumber: 1R21EY034258
  42. contactPoint: []
  43. includeInCitation: false
  44. name: National Institutes of Health
  45. roleName:
  46. - dcite:Funder
  47. schemaKey: Organization
  48. dateCreated: '2023-02-17T18:25:05.767450+00:00'
  49. description: Time-lapse recordings for the investigation of the relationship between
  50. the electroporation efficiency of nsEP and changes in the transmembrane potential
  51. (TMP). A strobe imaging synchronized with nsEP exposure was used. This allowed
  52. studying the nanosecond kinetics of TMP charging and relaxation, which is the primary
  53. effect of nsEP that rapidly charges the plasma membrane. The methodology involved
  54. pulsed laser fluorescence microscopy with voltage-sensitive FluoVolt dye-loaded
  55. cells that respond to TMP changes within nanoseconds. FluoVolt has a high sensitivity
  56. of about 10 % deltaF/F per 100 mV. During the imaging, a single short pulse laser
  57. flash is delivered at a precise time interval (addition of 25ns in each frame) before,
  58. during, or after nsEP exposure. The camera shutter opens in advance of and closes
  59. after the laser flash, capturing one TMP image per nsEP exposure. Supported by NIH
  60. 1R21EY034258
  61. ethicsApproval: []
  62. id: DANDI:000448/draft
  63. identifier: DANDI:000448
  64. keywords: []
  65. license:
  66. - spdx:CC-BY-4.0
  67. manifestLocation:
  68. - https://api.dandiarchive.org/api/dandisets/000448/versions/draft/assets/
  69. name: Time kinetics of the membrane potential at the cathode- and anode-facing poles
  70. of a cell induced by a train of 5 pulses at 833 kHz
  71. protocol: []
  72. relatedResource:
  73. - name: Action spectra and mechanisms of (in) efficiency of bipolar electric pulses
  74. at electroporation
  75. relation: dcite:IsPublishedIn
  76. schemaKey: Resource
  77. url: https://doi.org/10.1016/j.bioelechem.2022.108319
  78. repository: https://dandiarchive.org
  79. schemaKey: Dandiset
  80. schemaVersion: 0.6.3
  81. studyTarget: []
  82. url: https://dandiarchive.org/dandiset/000448/draft
  83. version: draft
  84. wasGeneratedBy:
  85. - identifier: R21EY034258
  86. name: Targeted Neuromodulation by Nanosecond Pulsed Electric Fields
  87. schemaKey: Project
  88. used: []
  89. wasAssociatedWith: []
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