Motility of Living Cells [electronic resource] / by P. Cappuccinelli.
Erişim Adresi
ISBN
9789400958128
Dil Kodu
İngilizce
Yer Numarası
DK/13792
Yazar
Basım Bildirimi
1st ed. 1980.
Yayın Bilgisi
Dordrecht : Springer Netherlands : Imprint: Springer, 1980.
Fiziksel Niteleme
80 p. 16 illus. online resource.
İçindekiler Notu
1 Introduction -- Topics for further reading -- 2 Motility in prokaryotic organisms -- 2.1 Elements involved in motility -- 2.2 Molecular structure of the bacterial flagellum -- 2.3 Regulation of synthesis and assembly of the bacterial flagellum -- 2.4 The function of bacterial flagella -- 2.5 Patterns of bacterial movements -- 2.6 Regulation of bacterial movement -- Topics for further reading -- 3 The motility system of eukaryotic cells -- 3.1 Microtubules -- 3.2 Molecular components of micro tubular structures -- 3.3 Microtubule assembly and its control -- 3.4 How microtubules can generate movement -- 3.5 The problem of intermediate filaments -- 3.6 Microfilaments -- 3.7 Molecular components of microfilaments -- 3.8 Microfilament assembly and its control -- 3.9 How microfilaments generate movement -- 3.10 Sliding control in microfilaments -- 3.11 Microtubules, microfilaments and cell membranes -- Topics for further reading -- 4 The movement of eukaryotic cells -- 4.1 Ciliary and flagellar movement -- 4.2 Amoeboid movement -- Topics for further reading -- References.
Özet, vb.
Philosophers through the ages have made the astute observation that life, in its many aspects, appears to be continuously moving. All things in the universe, from the cosmic to the atomic level, exhibit some form of movement. Getting down to earth, the capacity to move is also an essential feature of the biological world. Movement was in fact synonymous with life at the time that Antony van Leeuwenhoek made the first simple microscope (seventeenth century). Using his primitive instrument he observed micro-organisms. which he called 'animalcules', swimming through a drop of water, and therefore he proclaimed that they 'seem to be alive'. We now know that movement in this form is not a prerequisite for life. although it is a crucial aspect in many living organisms. Realizing the general importance of motility in the biological world, this book will try to focus on the motility at a cellular level. Motility at a cellular level can take one of several forms: movement of components within the cell itself or movement of the cell as a whole (cell locomotion).
Konu
Social sciences.
Humanities.
Humanities and Social Sciences.
Humanities.
Humanities and Social Sciences.
Kurum Adı
Eseri Alıntıla
Referansları kullanmadan önce gözden geçirmeniz ve varsa gerekli düzeltmeleri yapmanız önerilir.
Dijital Kaynak
MARC Görünümü
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505 0 |a1 Introduction -- Topics for further reading -- 2 Motility in prokaryotic organisms -- 2.1 Elements involved in motility -- 2.2 Molecular structure of the bacterial flagellum -- 2.3 Regulation of synthesis and assembly of the bacterial flagellum -- 2.4 The function of bacterial flagella -- 2.5 Patterns of bacterial movements -- 2.6 Regulation of bacterial movement -- Topics for further reading -- 3 The motility system of eukaryotic cells -- 3.1 Microtubules -- 3.2 Molecular components of micro tubular structures -- 3.3 Microtubule assembly and its control -- 3.4 How microtubules can generate movement -- 3.5 The problem of intermediate filaments -- 3.6 Microfilaments -- 3.7 Molecular components of microfilaments -- 3.8 Microfilament assembly and its control -- 3.9 How microfilaments generate movement -- 3.10 Sliding control in microfilaments -- 3.11 Microtubules, microfilaments and cell membranes -- Topics for further reading -- 4 The movement of eukaryotic cells -- 4.1 Ciliary and flagellar movement -- 4.2 Amoeboid movement -- Topics for further reading -- References.
520 |aPhilosophers through the ages have made the astute observation that life, in its many aspects, appears to be continuously moving. All things in the universe, from the cosmic to the atomic level, exhibit some form of movement. Getting down to earth, the capacity to move is also an essential feature of the biological world. Movement was in fact synonymous with life at the time that Antony van Leeuwenhoek made the first simple microscope (seventeenth century). Using his primitive instrument he observed micro-organisms. which he called 'animalcules', swimming through a drop of water, and therefore he proclaimed that they 'seem to be alive'. We now know that movement in this form is not a prerequisite for life. although it is a crucial aspect in many living organisms. Realizing the general importance of motility in the biological world, this book will try to focus on the motility at a cellular level. Motility at a cellular level can take one of several forms: movement of components within the cell itself or movement of the cell as a whole (cell locomotion).
532 8 |aAccessibility summary: This PDF is not accessible. It is based on scanned pages and does not support features such as screen reader compatibility or described non-text content (images, graphs etc). However, it likely supports searchable and selectable text based on OCR (Optical Character Recognition). Users with accessibility needs may not be able to use this content effectively. Please contact us at accessibilitysupport@springernature.com if you require assistance or an alternative format.
532 8 |aInaccessible, or known limited accessibility
532 8 |aNo reading system accessibility options actively disabled
532 8 |aPublisher contact for further accessibility information: accessibilitysupport@springernature.com
650 0|aSocial sciences.
650 0|aHumanities.
650 14|aHumanities and Social Sciences.
710 2 |aSpringerLink (Online service)
773 0 |tSpringer Nature eBook
776 08|iPrinted edition:|z9780412157707
776 08|iPrinted edition:|z9789400958135
856 40|uhttps://doi.org/10.1007/978-94-009-5812-8
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912 |aZDB-2-SXH
912 |aZDB-2-BAE
950 |aHumanities, Social Sciences and Law (SpringerNature-11648)
950 |aHistory (R0) (SpringerNature-43722)
001 812543
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005 20260130234141
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020 |a9789400958128|9978-94-009-5812-8
024 7 |a10.1007/978-94-009-5812-8|2doi
041 |aeng
049 |aTürk Tarih Kurumu Kütüphanesi
050 4|aH1-99
050 4|aAZ19.2-999
072 7|aGT|2bicssc
072 7|aNON000000|2bisacsh
072 7|aGT|2thema
082 04|a300|223
082 04|a001.3|223
090 |aDK/13792
100 1 |aCappuccinelli, P.|eauthor.|4aut|4http://id.loc.gov/vocabulary/relators/aut
245 10|aMotility of Living Cells|h[electronic resource] /|cby P. Cappuccinelli.
250 |a1st ed. 1980.
264 1|aDordrecht :|bSpringer Netherlands :|bImprint: Springer,|c1980.
300 |a80 p. 16 illus.|bonline resource.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
347 |atext file|bPDF|2rda
505 0 |a1 Introduction -- Topics for further reading -- 2 Motility in prokaryotic organisms -- 2.1 Elements involved in motility -- 2.2 Molecular structure of the bacterial flagellum -- 2.3 Regulation of synthesis and assembly of the bacterial flagellum -- 2.4 The function of bacterial flagella -- 2.5 Patterns of bacterial movements -- 2.6 Regulation of bacterial movement -- Topics for further reading -- 3 The motility system of eukaryotic cells -- 3.1 Microtubules -- 3.2 Molecular components of micro tubular structures -- 3.3 Microtubule assembly and its control -- 3.4 How microtubules can generate movement -- 3.5 The problem of intermediate filaments -- 3.6 Microfilaments -- 3.7 Molecular components of microfilaments -- 3.8 Microfilament assembly and its control -- 3.9 How microfilaments generate movement -- 3.10 Sliding control in microfilaments -- 3.11 Microtubules, microfilaments and cell membranes -- Topics for further reading -- 4 The movement of eukaryotic cells -- 4.1 Ciliary and flagellar movement -- 4.2 Amoeboid movement -- Topics for further reading -- References.
520 |aPhilosophers through the ages have made the astute observation that life, in its many aspects, appears to be continuously moving. All things in the universe, from the cosmic to the atomic level, exhibit some form of movement. Getting down to earth, the capacity to move is also an essential feature of the biological world. Movement was in fact synonymous with life at the time that Antony van Leeuwenhoek made the first simple microscope (seventeenth century). Using his primitive instrument he observed micro-organisms. which he called 'animalcules', swimming through a drop of water, and therefore he proclaimed that they 'seem to be alive'. We now know that movement in this form is not a prerequisite for life. although it is a crucial aspect in many living organisms. Realizing the general importance of motility in the biological world, this book will try to focus on the motility at a cellular level. Motility at a cellular level can take one of several forms: movement of components within the cell itself or movement of the cell as a whole (cell locomotion).
532 8 |aAccessibility summary: This PDF is not accessible. It is based on scanned pages and does not support features such as screen reader compatibility or described non-text content (images, graphs etc). However, it likely supports searchable and selectable text based on OCR (Optical Character Recognition). Users with accessibility needs may not be able to use this content effectively. Please contact us at accessibilitysupport@springernature.com if you require assistance or an alternative format.
532 8 |aInaccessible, or known limited accessibility
532 8 |aNo reading system accessibility options actively disabled
532 8 |aPublisher contact for further accessibility information: accessibilitysupport@springernature.com
650 0|aSocial sciences.
650 0|aHumanities.
650 14|aHumanities and Social Sciences.
710 2 |aSpringerLink (Online service)
773 0 |tSpringer Nature eBook
776 08|iPrinted edition:|z9780412157707
776 08|iPrinted edition:|z9789400958135
856 40|uhttps://doi.org/10.1007/978-94-009-5812-8
912 |aZDB-2-SHU
912 |aZDB-2-SXH
912 |aZDB-2-BAE
950 |aHumanities, Social Sciences and Law (SpringerNature-11648)
950 |aHistory (R0) (SpringerNature-43722)
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