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Each half-hour episode would usually end with a dramatic cliffhanger, to increase the audience's incentive to tune in to the next episode. The original magnetic recordings of the show were erased shortly after broadcast, and for several decades, it was believed that no recordings of the show still survived. However, in , a set of mis-filed Transcription Service discs produced for sale to overseas radio stations were discovered, containing complete copies of the three original series more accurately, the surviving version of the first season is a cut-down remake of the original, produced for the Transcription Service during the s.

This discovery enabled the BBC to begin re-broadcasting the show in the late s, and release copies of the show, first on audio cassette, and more recently on CD and internet download. How much to listen to J into S. I last did this in our old house with gas mantles-brown box radio with speaker in middle and station selecta on the wall A to J. This has made my day and i hope you keep going. Clive Matthews. Donald Cooper. John Bicknell.

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Richard E Semark. Colin Goff. Home sci fi journey into space.

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Spoiler : Oh so pleased I discovered you. Spoiler : Epic!! They will get the opportunity to handle space food and real 4. Encouraging the use of noise and actions will help pupils engage with the topic and feel enthused about learning.

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Space: I have experienced the wonder of looking at the vastness of the sky, and can recognise the sun, moon and stars and link them to daily patterns of life. Listening and Talking - Enjoyment and choice: I enjoy exploring events and characters in stories and other texts, sharing my thoughts in different ways. Tools for listening and Talking: As I listen and talk in different situations, I am learning to take turns and am developing my awareness of when to talk and when to listen. When I engage with others, I know when and how to listen, when to talk, how much to say, when to ask questions and how to respond with respect.

B , — Yamamoto, A. A cytoplasmic dynein heavy chain is required for oscillatory nuclear movement of meiotic prophase and efficient meiotic recombination in fission yeast. Ding, D. Oscillatory nuclear movement in fission yeast meiotic prophase is driven by astral microtubules, as revealed by continuous observation of chromosomes and microtubules in living cells.

Microtubule-dependent nuclear positioning and nuclear-dependent septum positioning in the fission yeast Saccharomyces pombe.

Journey through the universe beyond the speed of light [HD]

Intramitotic controls in the fission yeast Schizosaccharomyces pombe : the effect of cell size on spindle length and the timing of mitotic events. Pidoux, A. Live analysis of lagging chromosomes during anaphase and their effect on spindle elongation rate in fission yeast. Reinsch, S. Mechanisms of nuclear positioning.

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  • Hyman, A. Preparation of modified tubulins.

    “High Life,” Reviewed: Claire Denis’s Disappointing Journey Into Space | The New Yorker

    Methods Enzymol. The role of nucleation in patterning microtubule networks. Surrey, T. Physical properties determining self-organization of motors and microtubules. Science , — Osumi, M. Cell wall formation in regenerating protoplasts of Schizosaccharomyces pombe : study by high resolution, low voltage scanning electron microscopy. Electron Microsc. Tokyo 38 , — Petit, V. Focal adhesions: structure and dynamics. Cell 92 , — Kramer, R. Extracellular matrix interactions with the apical surface of vascular endothelial cells.

    Hughes, P. Integrin affinity modulation. Yeaman, C. New perspectives on mechanisms involved in generating epithelial cell polarity. Theurkauf, W. Reorganization of the cytoskeleton during Drosophila oogenesis: implications for axis specification and intercellular transport. Development , — Cox, D. Drosophila par-1 is required for oocyte differentiation and microtubule organization. Wallenfang, M. Polarization of the anterior—posterior axis of C.

    Nature , 89—92 O'Connell, K. The spd-2 gene is required for polarization of the anteroposterior axis and formation of the sperm asters in the Caenorhabditis elegans zygote. The experiments, elimination or ectopic positioning of sperm asters, described in references 82 and 83 , have shown that these microtubules are likely to direct polarity of the embryonic axis. Jesuthasan, S. Dynamic microtubules and specification of the zebrafish embryonic axis. Waterman-Storer, C. Microtubule growth activates Rac1 to promote lamellipodial protrusion in fibroblasts. Nature Cell Biol. Mikhailov, A.

    Relationship between microtubule dynamics and lamellipodium formation revealed by direct imaging of microtubules in cells treated with nocodazole or taxol. Cytoskeleton 41 , — Tanaka, E. The role of microtubule dynamics in growth cone motility and axonal growth. Vasiliev, J. Polarization of pseudopodial activities: cytoskeletal mechanisms.

    Bershadsky, A. Pseudopodial activity at the active edge of migrating fibroblast is decreased after drug-induced microtubule depolymerization. Cytoskeleton 19 , — Kabir, N. Protein kinase C activation promotes microtubule advance in neuronal growth cones by increasing average microtubule growth lifetimes.

    BBC radio at 90: Journey Into Space, 1953

    Glasgow, J. Role of microtubules in random cell migration: stabilization of cell polarity. Cytoskeleton 27 , 88—96 Takei, Y. Defects in axonal elongation and neuronal migration in mice with disrupted tau and map1b genes. Ballestrem, C. Actin-dependent lamellipodia formation and microtubule-dependent tail retraction control-directed cell migration. Wadsworth, P. Regional regulation of microtubule dynamics in polarized, motile cells. Cytoskeleton 42 , 48—59 Describes experiments showing that the dynamics of microtubules are regionally regulated.

    By examining individual microtubules, the author shows that microtubules at the leading edge of polarized motile cells show more persistent growth than those at the lateral edges. Yvon, A.

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    Region-specific microtubule transport in motile cells. Kaverina, I. Targeting, capture, and stabilization of microtubules at early focal adhesions. Microtubule targeting of substrate contact promotes their relaxation and dissociation. Wacker, I. Accumulation of a microtubule-binding protein, pp, at desmosomal plaques. Kobayashi, N. Rodionov, V. Microtubule-dependent control of cell shape and pseudopodial activity is inhibited by the antibody to kinesin motor domain. Nonaka, S. Randomization of left-right asymmetry due to loss of nodal cilia generating leftward flow of extraembryonic fluid in mice lacking KIF3B motor protein.

    Cell 95 , — Assembly and positioning of microtubule asters in microfabricated chambers. USA 94 , — Self-centring activity of cytoplasm. Xiang, X. Cytoplasmic dynein is involved in nuclear migration in Aspergillus nidulans. Bruno, K.