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    BBC Royal Institution Christmas Lectures - Life Fantastic (2013)

    Posted By: Tutorial
    BBC Royal Institution Christmas Lectures - Life Fantastic (2013)

    BBC Royal Institution Christmas Lectures - Life Fantastic (2013)
    HDTV | 1280 x 720 | .MKV/AVC @ 3563 Kbps | 59 mins | 1.56 GB
    Audio: English AAC 130 Kbps, 2 channels | Subs: English
    Genre: Documentary

    Dr Alison Woollard explores the frontiers of developmental biology.
    Part 1: Where Do I Come From?
    Dr Alison Woollard from the University of Oxford reveals just how the incredible transformation from a single cell into a walking, talking, multi-trillion-celled organism that we call the human body takes place. Using live experiments she shows how each of those trillions of cells knows what to do, when to do it and how to organise themselves to carry out vital specialist roles in the body. In the lecture theatre we witness the creation of life, following the 'real-time' embryonic development of a tiny worm on its journey to adulthood. Alison is passionate about what these tiny creatures can tell us about developmental biology. Joining her on this journey is Sir Paul Nurse, who won his Nobel Prize for his work on yeast. Such organisms may seem a long way from us, yet by understanding how cells divide and function, they have helped scientists make significant advances in the treatment of cancers.

    Part 2: Am I a Mutant?
    Dr Alison Woollard unravels the mystery of why evolution by natural selection has given such stunning diversity on our planet. Charles Darwin understood that species adapt and change, but how they did so remained a puzzle to him. Alison reveals that diversity has come about by genetic mutation, with life revolving around the survival of the fittest mutant. Darwin himself appears - for the very first time in the 188-year history of the lectures - in the form of a ghostly apparition. After explaining Darwin's theory, Alison reveals to both him and to the audience what Darwin never knew. Alison's guest on this lecture is fellow Oxford biologist, Professor Peter Holland. Together they explore the crucial genes responsible for mapping out an animal's body-plan. We find out what happened when a developing lizard's body eventually ended up as an entirely different animal altogether - a snake.

    Part 3: Could I Live Forever?
    Dr Alison Woollard tackles a question that has intrigued scientists and natural philosophers for centuries - why do we die? The cycle of life and death affects all cells, but Alison reveals a shocking truth: that 'cell death' plays an important part in life. It enables the development and survival of most multi-celled organisms from hedgehogs to humans. Why does a mayfly's life last just a few minutes when an elephant can live for 80 years? Developmental biology and genetics give us new insights into how cells work and how we can use this knowledge to improve or even extend our lives. Some animals, like the naked mole rat, are well on the way. Alison artificially 'ages' the audience using a computer program and meets a patient who has had their eyesight restored with cutting-edge stem cell therapy. Joining Alison to discuss the serious ethical implications of such medical and scientific advances is Lord Winston. They confront the potential dangers of tinkering with evolution.


    [ About file ]

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    Date: Wed, 14 Sep 2016 19:49:02 +0300
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    [ Magic ]

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    [ Generic infos ]

    Duration: 00:59:00 (3539.763 s)
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    [ Relevant data ]

    Resolution: 1280 x 720
    Width: multiple of 32
    Height: multiple of 16
    Average DRF: 19.852566
    Standard deviation: 4.203847
    Std. dev. weighted mean: 3.924301

    [ Video track ]

    Codec ID: V_MPEG4/ISO/AVC
    Resolution: 1280 x 720
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    Pixel aspect ratio: 1:1 = 1
    Display aspect ratio: 16:9 = 1.777778
    Framerate: 25 fps
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    Duration (bs): 00:59:00 (3539.76 s)
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    Qf: 0.154627

    [ Audio track ]

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    Channels: 2
    Stream size: 57,808,464 bytes (55.130447 MiB)
    Bitstream type (bs): AAC LC (Low Complexity)
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    Duration (bs): 00:59:00 (3539.754667 s)
    Chunk-aligned (bs): Yes
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    Sampling frequency (bs): 48000 Hz
    Mode (bs): 2: front-left, front-right

    [ Video bitstream ]

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    User data: Copyleft 2003-2013 | | cabac=1
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    Num ref frames: 6
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    Chroma format: YUV 4:2:0
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    Entropy coding type: CABAC
    Weighted prediction: P slices - explicit weighted prediction
    Weighted bipred idc: B slices - implicit weighted prediction
    8x8dct: Yes
    Total frames: 88,494
    Drop/delay frames: 0
    Corrupt frames: 0

    P-slices: 35002 ( 39.553 %) ########
    B-slices: 52622 ( 59.464 %) ############
    I-slices: 870 ( 0.983 %)
    SP-slices: 0 ( 0.000 %)
    SI-slices: 0 ( 0.000 %)

    [ DRF analysis ]

    average DRF: 19.852566
    standard deviation: 4.203847
    max DRF: 31

    DRF<6: 0 ( 0.000 %)
    DRF=6: 1 ( 0.001 %)
    DRF=7: 5 ( 0.006 %)
    DRF=8: 94 ( 0.106 %)
    DRF=9: 170 ( 0.192 %)
    DRF=10: 495 ( 0.559 %)
    DRF=11: 838 ( 0.947 %)
    DRF=12: 1227 ( 1.387 %)
    DRF=13: 2175 ( 2.458 %)
    DRF=14: 2733 ( 3.088 %) #
    DRF=15: 4202 ( 4.748 %) #
    DRF=16: 4934 ( 5.576 %) #
    DRF=17: 8420 ( 9.515 %) ##
    DRF=18: 9363 ( 10.580 %) ##
    DRF=19: 10839 ( 12.248 %) ##
    DRF=20: 7912 ( 8.941 %) ##
    DRF=21: 7589 ( 8.576 %) ##
    DRF=22: 6159 ( 6.960 %) #
    DRF=23: 5209 ( 5.886 %) #
    DRF=24: 3933 ( 4.444 %) #
    DRF=25: 2911 ( 3.289 %) #
    DRF=26: 2223 ( 2.512 %) #
    DRF=27: 1779 ( 2.010 %)
    DRF=28: 1910 ( 2.158 %)
    DRF=29: 1540 ( 1.740 %)
    DRF=30: 1383 ( 1.563 %)
    DRF=31: 450 ( 0.509 %)
    DRF>31: 0 ( 0.000 %)

    P-slices average DRF: 18.084052
    P-slices std. deviation: 3.986093
    P-slices max DRF: 31

    B-slices average DRF: 21.08715
    B-slices std. deviation: 3.89468
    B-slices max DRF: 31

    I-slices average DRF: 16.329885
    I-slices std. deviation: 3.229947
    I-slices max DRF: 28

    [ Profile compliancy ]

    Selected profile: MTK PAL 6000
    Resolution: 1280 x 720 > 720 x 576
    Framerate: Ok
    Buffer underflow: 00:02:02 (frame 3059)
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    Buffer underflow: 00:02:06 (frame 3140)
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    Buffer underflow: 00:02:07 (frame 3170)
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    Buffer underflow: 00:02:08 (frame 3189)
    Buffer underflow: 00:02:08 (frame 3194)
    Buffer underflow: 00:02:08 (frame 3199)
    Buffer underflow: 00:02:08 (frame 3204)
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    Buffer underflow: 00:02:09 (frame 3214)
    Buffer underflow: 00:02:09 (frame 3228)
    Buffer underflow: 00:02:10 (frame 3250)
    Error: Too many violations

    This report was created by AVInaptic (18-12-2011) on 15-09-2016 11:56:11
    Screenshots

    BBC Royal Institution Christmas Lectures - Life Fantastic (2013)

    BBC Royal Institution Christmas Lectures - Life Fantastic (2013)

    BBC Royal Institution Christmas Lectures - Life Fantastic (2013)

    BBC Royal Institution Christmas Lectures - Life Fantastic (2013)

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