$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

A new nonscanning confocal microscopy module for functional voltage-sensitive dye and Ca2+ imaging of neuronal circuit activity

Journal of neurophysiology, v.110 no.2, 2013년, pp.553 - 561  

Tominaga, Takashi (Laboratory for Neural Circuit Systems, Institute of Neuroscience, Tokushima Bunri University, Shido, Sanuki, Kagawa, Japan) ,  Tominaga, Yoko (Laboratory for Neural Circuit Systems, Institute of Neuroscience, Tokushima Bunri University, Shido, Sanuki, Kagawa, Japan)

Abstract AI-Helper 아이콘AI-Helper

Recent advances in fluorescent confocal microscopy and voltage-sensitive and Ca2+ dyes have vastly improved our ability to image neuronal circuits. However, existing confocal systems are not fast enough or too noisy for many live-cell functional imaging studies. Here, we describe and demonstrate the...

주제어

참고문헌 (53)

  1. Akemann, Walther, Mutoh, Hiroki, Perron, Amélie, Park, Yun Kyung, Iwamoto, Yuka, Knöpfel, Thomas. Imaging neural circuit dynamics with a voltage-sensitive fluorescent protein. Journal of neurophysiology, vol.108, no.8, 2323-2337.

  2. Akemann, Walther, Mutoh, Hiroki, Perron, Am챕lie, Rossier, Jean, Kn철pfel, Thomas. Imaging brain electric signals with genetically targeted voltage-sensitive fluorescent proteins. Nature methods, vol.7, no.8, 643-649.

  3. Amos, W.B., White, J.G.. How the Confocal Laser Scanning Microscope entered Biological Research. Biology of the cell, vol.95, no.6, 335-342.

  4. Baker, B. J., Mutoh, H., Dimitrov, D., Akemann, W., Perron, A., Iwamoto, Y., Jin, L., Cohen, L. B., Isacoff, E. Y., Pieribone, V. A., Hughes, T., Knöpfel, T.. Genetically encoded fluorescent sensors of membrane potential. Brain cell biology, vol.36, no.1, 53-67.

  5. Rinaldi Barkat, Tania, Polley, Daniel B., Hensch, Takao K.. A critical period for auditory thalamocortical connectivity. Nature neuroscience, vol.14, no.9, 1189-1194.

  6. Bradley, Jonathan, Luo, Ray, Otis, Thomas S., DiGregorio, David A.. Submillisecond Optical Reporting of Membrane PotentialIn SituUsing a Neuronal Tracer Dye. The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.29, no.29, 9197-9209.

  7. Brakenhoff, G. J., Blom, P., Barends, P.. Confocal scanning light microscopy with high aperture immersion lenses. Journal of microscopy, vol.117, no.2, 219-232.

  8. Bullen, A., Patel, S.S., Saggau, P.. High-speed, random-access fluorescence microscopy: I. High-resolution optical recording with voltage-sensitive dyes and ion indicators. Biophysical journal, vol.73, no.1, 477-491.

  9. Bullen, A., Saggau, P.. High-Speed, Random-Access Fluorescence Microscopy: II. Fast Quantitative Measurements With Voltage-Sensitive Dyes. Biophysical journal, vol.76, no.4, 2272-2287.

  10. Cohen, L. B., Salzberg, B. M., Davila, H. V., Ross, W. N., Landowne, D., Waggoner, A. S., Wang, C. H.. Changes in axon fluorescence during activity: Molecular probes of membrane potential. The Journal of membrane biology, vol.19, no.1, 1-36.

  11. Cohen, L B, Salzberg, B M, Grinvald, A. Optical Methods for Monitoring Neuron Activity. Annual review of neuroscience, vol.1, 171-182.

  12. DiFranco, Marino, Quinonez, Marbella, Vergara, Julio L.. The delayed rectifier potassium conductance in the sarcolemma and the transverse tubular system membranes of mammalian skeletal muscle fibers. The Journal of general physiology, vol.140, no.2, 109-137.

  13. DiGregorio, David A., Peskoff, Arthur, Vergara, Julio L.. Measurement of Action Potential-Induced Presynaptic Calcium Domains at a Cultured Neuromuscular Junction. The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.19, no.18, 7846-7859.

  14. Dombeck, Daniel A., Blanchard-Desce, Mireille, Webb, Watt W.. Optical Recording of Action Potentials with Second-Harmonic Generation Microscopy. The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.24, no.4, 999-1003.

  15. Dombeck, Daniel A., Sacconi, Leonardo, Blanchard-Desce, Mireille, Webb, Watt W.. Optical Recording of Fast Neuronal Membrane Potential Transients in Acute Mammalian Brain Slices by Second-Harmonic Generation Microscopy. Journal of neurophysiology, vol.94, no.5, 3628-3636.

  16. Duemani Reddy, Gaddum, Kelleher, Keith, Fink, Rudy, Saggau, Peter. Three-dimensional random access multiphoton microscopy for functional imaging of neuronal activity. Nature neuroscience, vol.11, no.6, 713-720.

  17. Escobar, Ariel L., Monck, Jonathan R., Fernandez, Julio M., Vergara, Julio L.. Localization of the site of Ca2 + release at the level of a single sarcomere in skeletal muscle fibres. Nature, vol.367, no.6465, 739-741.

  18. Fink, Ann E., Bender, Kevin J., Trussell, Laurence O., Otis, Thomas S., DiGregorio, David A.. Two-Photon Compatibility and Single-Voxel, Single-Trial Detection of Subthreshold Neuronal Activity by a Two-Component Optical Voltage Sensor. PloS one, vol.7, no.8, e41434-.

  19. Friedrich, M., Gan, Q., Ermolayev, V., Harms, Gregory S.. STED-SPIM: Stimulated Emission Depletion Improves Sheet Illumination Microscopy Resolution. Biophysical journal, vol.100, no.8, L43-L45.

  20. Goldstein, Seth R., Hubin, Thomas, Rosenthal, Scott, Washburn, Clayton. A confocal video‐rate laser‐beam scanning reflected‐light microscope with no moving parts. Journal of microscopy, vol.157, no.1, 29-38.

  21. Grinvald, A, Frostig, R D, Lieke, E, Hildesheim, R. Optical imaging of neuronal activity.. Physiological reviews, vol.68, no.4, 1285-1366.

  22. Grinvald, Amiram, Hildesheim, Rina. VSDI: a new era in functional imaging of cortical dynamics. Nature reviews. Neuroscience, vol.5, no.11, 874-885.

  23. Grinvald, A., Manker, A., Segal, M.. Visualization of the spread of electrical activity in rat hippocampal slices by voltage‐sensitive optical probes. The Journal of physiology, vol.333, 269-291.

  24. Huisken, Jan. Slicing embryos gently with laser light sheets. BioEssays, vol.34, no.5, 406-411.

  25. Huisken, Jan, Stainier, Didier Y. R.. Even fluorescence excitation by multidirectional selective plane illumination microscopy (mSPIM). Optics letters, vol.32, no.17, 2608-.

  26. Huisken, Jan, Stainier, Didier Y. R.. Selective plane illumination microscopy techniques in developmental biology. Development, vol.136, no.12, 1963-1975.

  27. Brain Mechanisms of Perception and Memory Ichikawa M 638 1993 

  28. Ikegaya, Yuji, Aaron, Gloster, Cossart, Rosa, Aronov, Dmitriy, Lampl, Ilan, Ferster, David, Yuste, Rafael. Synfire Chains and Cortical Songs: Temporal Modules of Cortical Activity. Science, vol.304, no.5670, 559-564.

  29. 10.1007/978-1-4757-5348-6_10 

  30. Knöpfel, Thomas. Expanding the toolbox for remote control of neuronal circuits. Nature methods, vol.5, no.4, 293-295.

  31. Kn철pfel, Thomas. Genetically encoded optical indicators for the analysis of neuronal circuits. Nature reviews. Neuroscience, vol.13, no.10, 687-700.

  32. Knöpfel, Thomas, Díez-García, Javier, Akemann, Walther. Optical probing of neuronal circuit dynamics: genetically encoded versus classical fluorescent sensors. Trends in neurosciences, vol.29, no.3, 160-166.

  33. Kralj, Joel M., Douglass, Adam D., Hochbaum, Daniel R., Maclaurin, Dougal, Cohen, Adam E.. Optical recording of action potentials in mammalian neurons using a microbial rhodopsin. Nature methods, vol.9, no.1, 90-95.

  34. Kralj, Joel M., Hochbaum, Daniel R., Douglass, Adam D., Cohen, Adam E.. Electrical Spiking in Escherichia coli Probed with a Fluorescent Voltage-Indicating Protein. Science, vol.333, no.6040, 345-348.

  35. Loew, LeslieM., Cohen, LawrenceB., Dix, James, Fluhler, EricN., Montana, Valerie, Salama, Guy, Jian-young, Wu. A naphthyl analog of the aminostyryl pyridinium class of potentiometric membrane dyes shows consistent sensitivity in a variety of tissue, cell, and model membrane preparations. The Journal of membrane biology, vol.130, no.1,

  36. Nishimura, Masataka, Shirasawa, Hiroshi, Song, Wen-Jie. A light-emitting diode light source for imaging of neural activities with voltage-sensitive dyes. Neuroscience research : the official journal of the Japan Neuroscience Society, vol.54, no.3, 230-234.

  37. Nuriya, Mutsuo, Jiang, Nemet, Boaz, Eisenthal, Kenneth B., Yuste, Rafael. Imaging membrane potential in dendritic spines. Proceedings of the National Academy of Sciences of the United States of America, vol.103, no.3, 786-790.

  38. Ohki, Kenichi, Chung, Sooyoung, Ch'ng, Yeang H., Kara, Prakash, Reid, R. Clay. Functional imaging with cellular resolution reveals precise micro-architecture in visual cortex. Nature, vol.433, no.7026, 597-603.

  39. Otsu, Y., Bormuth, V., Wong, J., Mathieu, B., Dugue, G.P., Feltz, A., Dieudonne, S.. Optical monitoring of neuronal activity at high frame rate with a digital random-access multiphoton (RAMP) microscope. Journal of neuroscience methods, vol.173, no.2, 259-270.

  40. 10.1007/978-0-387-45524-2 

  41. Peterka, Darcy S., Takahashi, Hiroto, Yuste, Rafael. Imaging Voltage in Neurons. Neuron, vol.69, no.1, 9-21.

  42. Peterlin, Zita A., Kozloski, James, Mao, Bu-Qing, Tsiola, Areti, Yuste, Rafael. Optical probing of neuronal circuits with calcium indicators. Proceedings of the National Academy of Sciences of the United States of America, vol.97, no.7, 3619-3624.

  43. Ratzlaff, E.H., Grinvald, A.. A tandem-lens epifluorescence macroscope: Hundred-fold brightness advantage for wide-field imaging. Journal of neuroscience methods, vol.36, no.2, 127-137.

  44. Saggau, Peter. New methods and uses for fast optical scanning. Current opinion in neurobiology, vol.16, no.5, 543-550.

  45. Cell Mol Biol Saggau P 827 44 1998 

  46. SALZBERG, B. M., DAVILA, H. V., COHEN, L. B.. Optical Recording of Impulses in Individual Neurones of an Invertebrate Central Nervous System. Nature, vol.246, no.5434, 508-509.

  47. Suh, Junghyup, Rivest, Alexander J., Nakashiba, Toshiaki, Tominaga, Takashi, Tonegawa, Susumu. Entorhinal Cortex Layer III Input to the Hippocampus Is Crucial for Temporal Association Memory. Science, vol.334, no.6061, 1415-1420.

  48. Tominaga, Takashi, Tominaga, Yoko. GABAA receptor-mediated modulation of neuronal activity propagation upon tetanic stimulation in rat hippocampal slices. Pflügers archiv : European journal of physiology, vol.460, no.5, 875-889.

  49. Tominaga, Takashi, Tominaga, Yoko, Yamada, Hitoshi, Matsumoto, Gen, Ichikawa, Michinori. Quantification of optical signals with electrophysiological signals in neural activities of Di-4-ANEPPS stained rat hippocampal slices. Journal of neuroscience methods, vol.102, no.1, 11-23.

  50. Tominaga, Y., Ichikawa, M., Tominaga, T.. Membrane potential response profiles of CA1 pyramidal cells probed with voltage-sensitive dye optical imaging in rat hippocampal slices reveal the impact of GABAA-mediated feed-forward inhibition in signal propagation. Neuroscience research : the official journal of the Japan Neuroscience Society, vol.64, no.2, 152-161.

  51. 2005 Neuroscience Meeting Planner Tominaga Y 2005 

  52. Turaga, Diwakar, Holy, Timothy E.. Organization of Vomeronasal Sensory Coding Revealed by Fast Volumetric Calcium Imaging. The Journal of neuroscience : the official journal of the Society for Neuroscience, vol.32, no.5, 1612-1621.

  53. Vranesic, I, Iijima, T, Ichikawa, M, Matsumoto, G, Knöpfel, T. Signal transmission in the parallel fiber-Purkinje cell system visualized by high-resolution imaging.. Proceedings of the National Academy of Sciences of the United States of America, vol.91, no.26, 13014-13017.

섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로