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  1. Book: Anatomie lernen mit Fällen

    Sambale, Tobias / Bräuer, Lars / Grötz, Sabine

    in Pflege- und Gesundheitsberufen

    2023  

    Abstract: Anatomie Lernen mit Fällen erläutert Auszubildenen in der Pflege die Anatomie mit direktem Praxisbezug und überzeugt sie durch fallorientierte Prüfungsvorbereitung: Ausgehend von einem detaillierten Fallbeispiel werden Ihnen anatomische, physiologische ... ...

    Author's details Tobias Sambale, Lars Bräuer ; unter Mitarbeit von: Sabine Grötz
    Abstract Anatomie Lernen mit Fällen erläutert Auszubildenen in der Pflege die Anatomie mit direktem Praxisbezug und überzeugt sie durch fallorientierte Prüfungsvorbereitung: Ausgehend von einem detaillierten Fallbeispiel werden Ihnen anatomische, physiologische und biochemische Zusammenhänge mit Realitätsbezug mit Grundlagenbbildungen veranschaulicht und erklärt. So verstehen Sie die Anatomie leicht und behalten sie gut im Gedächtnis. Ideal als Ergänzung zum Unterricht und als Vorbereitung auf die Prüfung.
    Keywords Fallbuch ; Fälle ; Anatomie ; Physiologie ; Biochemie ; Pflegeausbildung ; Pflegeexamen ; Fallbeispiele ; Hardcover, Softcover / Medizin/Pflege ; Fallstudie
    Subject Einzelfallanalyse ; Einzelfalldiagnose ; Einzelfallstudie ; Case study ; Fallanalyse ; Mensch ; Tiere ; Tieranatomie ; Kunst der Zergliederung ; Zergliederungskunst
    Language German
    Size XIV, 202 Seiten, Illustrationen, Diagramme, 27 cm x 21 cm
    Edition 1. Auflage
    Publisher Elsevier
    Publishing place München
    Publishing country Germany
    Document type Book
    HBZ-ID HT021778652
    ISBN 978-3-437-28780-0 ; 3-437-28780-X ; 9783437063152 ; 3437063154
    Database Catalogue ZB MED Medicine, Health

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  2. Book: Gray's klinischer Fotoatlas der Anatomie

    Loukas, Marios / Benninger, Brion / Tubbs, R. Shane / Bräuer, Lars

    2023  

    Title translation Gray's clinical photographic dissector of the human body
    Title variant Klinischer Fotoatlas der Anatomie
    Author's details Marios Loukas, R. Shane Tubbs, Brion Benninger ; deutsche Bearbeitung: Prof. Dr. rer. nat. Dr. habil. med. Lars Bräuer
    MeSH term(s) Dissection ; Anatomy
    Keywords Atlas ; Anatomie
    Subject Mensch ; Tiere ; Tieranatomie ; Kunst der Zergliederung ; Zergliederungskunst
    Subject code 610
    Language German
    Size XI, 480 Seiten, Illustrationen, 29.7 cm x 21 cm
    Edition 2. Auflage
    Publisher Elsevier
    Publishing place München
    Publishing country Germany
    Document type Book
    Note Übersetzung der 2. englischen Ausgabe, 1. deutsche Ausgabe.
    Accompanying material Mit Zugang zu Präp-Videos über Code
    HBZ-ID HT030334452
    ISBN 978-3-437-44780-8 ; 9783437054235 ; 3-437-44780-7 ; 3437054236
    Database Catalogue ZB MED Medicine, Health

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  3. Book: Gray's Atlas der Anatomie

    Drake, Richard L. / Vogl, Wayne / Mitchell, Adam W. M. / Tibbitts, Richard M. / Richardson, Paul E. / Bräuer, Lars

    2021  

    Title translation Gray´s Atlas of Anatomy
    Title variant Atlas der Anatomie
    Author's details Richard L. Drake, A. Wayne Vogl, Adam W.M. Mitchell, Richard M. Tibbitts, Paul E. Richardson ; deutsche Bearbeitung von: Prof. Dr. Lars Bräuer, Erlangen
    Keywords Anatomie
    Subject Mensch ; Tiere ; Tieranatomie ; Kunst der Zergliederung ; Zergliederungskunst
    Language German
    Size VIII, 560 Seiten, Illustrationen, 27.6 cm x 21.6 cm, 1788 g
    Edition 3. Auflage
    Publisher Elsevier
    Publishing place München
    Publishing country Germany
    Document type Book
    Old title Vorangegangen ist
    HBZ-ID HT021024587
    ISBN 978-3-437-44702-0 ; 3-437-44702-5 ; 9783437058523 ; 3437058525
    Database Catalogue ZB MED Medicine, Health

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  4. Book ; Online ; E-Book: Gray's Atlas der Anatomie

    Drake, Richard L. / Bräuer, Lars / Vogl, Wayne / Mitchell, Adam W. M.

    2017  

    Title translation Gray´s atlas of anatomy
    Author's details Richard L. Drake, A. Wayne Vogl, Adam W.M. Mitchell ; Deutsche Bearbeitung von Lars Bräuer
    Keywords Human anatomy ; Atlases ; Electronic books ; Anatomy
    Language German
    Size 1 Online-Ressource (VIII, 558 Seiten), Illustrationen, Diagramme
    Edition 2. Auflage
    Publisher Elsevier, Urban & Fischer
    Publishing place München
    Publishing country Germany
    Document type Book ; Online ; E-Book
    Remark Zugriff für angemeldete ZB MED-Nutzerinnen und -Nutzer
    HBZ-ID HT020545270
    ISBN 978-3-437-18059-0 ; 9783437447013 ; 3-437-18059-2 ; 3437447017
    Database ZB MED Catalogue: Medicine, Health, Nutrition, Environment, Agriculture

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  5. Article ; Online: Corrigendum to "New insights into lacrimal gland anatomy using 7T MRI and electron microscopy: Relevance for lacrimal gland targeted therapies and bioengineering" [Ocul. Surf. 30 (October 2023) 204-212].

    Singh, Swati / Winter, Zoltan / Necker, Fabian / Bäuerle, Tobias / Scholz, Michael / Bräuer, Lars / Paulsen, Friedrich

    The ocular surface

    2024  Volume 33, Page(s) 34

    Language English
    Publishing date 2024-04-16
    Publishing country United States
    Document type Published Erratum
    ZDB-ID 2208578-6
    ISSN 1937-5913 ; 1542-0124
    ISSN (online) 1937-5913
    ISSN 1542-0124
    DOI 10.1016/j.jtos.2024.04.002
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  6. Book: Gray's Atlas der Anatomie

    Drake, Richard L. / Gray, Henry / Bräuer, Lars

    2009  

    Title variant Atlas der Anatomie
    Author's details Richard L. Drake ... Dt. Bearb. von Lars Bräuer
    Keywords Anatomy ; Anatomie
    Subject Mensch ; Tiere ; Tieranatomie ; Kunst der Zergliederung ; Zergliederungskunst
    Language German
    Size XVI, 558 S. : überw. Ill.
    Edition 1. Aufl.
    Publisher Elsevier, Urban & Fischer
    Publishing place München
    Publishing country Germany
    Document type Book
    Note Aus dem Engl. übers. ; Hier auch später erschienene, unveränderte Nachdrucke
    HBZ-ID HT016074610
    ISBN 978-3-437-44700-6 ; 9783437448270 ; 3-437-44700-9 ; 3437448277
    Database Catalogue ZB MED Medicine, Health

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  7. Book: Industrie-Hochtemperaturwärmepumpe mit NH3

    Brauer, Lars

    Verbundprojekt: thermea.Energiesysteme/GEA Refrigeration Germany ; Teilprojekt A, thermea: Aufbau und Test der Wärmepumpe ; Teilprojekt B, GEA: Komponenten für eine Hochtemperatuwärmepumpe für den industriellen Einsatz mit Ammonik als Kältemittel ; Abschlussbericht

    2014  

    Author's details thermea. Energiesysteme ... Autoren: Lars Brauer
    Language German
    Size 34 Bl., Ill., graph. Darst.
    Publishing place Ottendorf-Okrilla u.a.
    Document type Book
    Note Förderkennzeichen BMWi 0327502 A-B. - Verbund-Nr. 01077685
    Database Library catalogue of the German National Library of Science and Technology (TIB), Hannover

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  8. Article ; Online: Corrigendum to "Internal vascular anatomy of the human lacrimal gland: A protocol based on cadaver dissection and three-dimensional micro-computed tomography" [Ann. Anat. 252 (2024) 152207].

    Singh, Swati / Chopra, Prakshi / Necker, Fabian / Scholz, Michael / Liphardt, Anna-Maria / Schuster, Louis / Paulsen, Friedrich / Bräuer, Lars

    Annals of anatomy = Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft

    2024  Volume 254, Page(s) 152265

    Language English
    Publishing date 2024-04-22
    Publishing country Germany
    Document type Published Erratum
    ZDB-ID 1106738-x
    ISSN 1618-0402 ; 0940-9602
    ISSN (online) 1618-0402
    ISSN 0940-9602
    DOI 10.1016/j.aanat.2024.152265
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  9. Article ; Online: Inverse identification of region-specific hyperelastic material parameters for human brain tissue.

    Hinrichsen, Jan / Reiter, Nina / Bräuer, Lars / Paulsen, Friedrich / Kaessmair, Stefan / Budday, Silvia

    Biomechanics and modeling in mechanobiology

    2023  Volume 22, Issue 5, Page(s) 1729–1749

    Abstract: The identification of material parameters accurately describing the region-dependent mechanical behavior of human brain tissue is crucial for computational models used to assist, e.g., the development of safety equipment like helmets or the planning and ... ...

    Abstract The identification of material parameters accurately describing the region-dependent mechanical behavior of human brain tissue is crucial for computational models used to assist, e.g., the development of safety equipment like helmets or the planning and execution of brain surgery. While the division of the human brain into different anatomical regions is well established, knowledge about regions with distinct mechanical properties remains limited. Here, we establish an inverse parameter identification scheme using a hyperelastic Ogden model and experimental data from multi-modal testing of tissue from 19 anatomical human brain regions to identify mechanically distinct regions and provide the corresponding material parameters. We assign the 19 anatomical regions to nine governing regions based on similar parameters and microstructures. Statistical analyses confirm differences between the regions and indicate that at least the corpus callosum and the corona radiata should be assigned different material parameters in computational models of the human brain. We provide a total of four parameter sets based on the two initial Poisson's ratios of 0.45 and 0.49 as well as the pre- and unconditioned experimental responses, respectively. Our results highlight the close interrelation between the Poisson's ratio and the remaining model parameters. The identified parameters will contribute to more precise computational models enabling spatially resolved predictions of the stress and strain states in human brains under complex mechanical loading conditions.
    MeSH term(s) Humans ; Brain ; Corpus Callosum ; Head Protective Devices
    Language English
    Publishing date 2023-09-07
    Publishing country Germany
    Document type Journal Article
    ZDB-ID 2093052-5
    ISSN 1617-7940 ; 1617-7959
    ISSN (online) 1617-7940
    ISSN 1617-7959
    DOI 10.1007/s10237-023-01739-w
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  10. Article ; Online: New insights into lacrimal gland anatomy using 7T MRI and electron microscopy: Relevance for lacrimal gland targeted therapies and bioengineering.

    Singh, Swati / Winter, Zoltan / Necker, Fabian / Bäuerle, Tobias / Scholz, Michael / Bräuer, Lars / Paulsen, Friedrich

    The ocular surface

    2023  Volume 30, Page(s) 204–212

    Abstract: Purpose: To study the tissue architecture, isthmus (connection between two lobes) of the lacrimal gland using preclinical 7T MRI in combination with histology and electron microscopy.: Methods: Ten lacrimal glands from Caucasian body donors (mean age ...

    Abstract Purpose: To study the tissue architecture, isthmus (connection between two lobes) of the lacrimal gland using preclinical 7T MRI in combination with histology and electron microscopy.
    Methods: Ten lacrimal glands from Caucasian body donors (mean age 78.7 years) were studied using 7T-MRI (N = 5; scanned at 75-μm intervals), histology, and electron microscopy (N = 5) and 3D cinematic rendering (CR) techniques.
    Results: 3D CR images showed uniform-sized lobules (widest lobule diameter, 1.68 ± 0.19 mm in orbital lobe, 1.68 ± 0.17 mm in palpebral lobe) in both lobes, separated by septae (size, 0.29 ± 0.09 mm). The internal framework of the gland resembled a honeycoomb pattern. In CR and histology, the isthmus contained glandular acini, large blood vessels, nerves, and no more than two ducts having a tortuous course towards the conjunctival surface. On assigning a color display to the rendered lacrimal gland, all glands showed a blood vessel originating from the main lacrimal artery just 5 mm beyond the hilum and making it course to the palpebral lobe via isthmus. The distance between the conjunctiva and the central substance of the orbital and palpebral lobe was 9.4 ± 0.2 mm and 2.8 ± 0.7 mm, respectively. Electron microscopy of the palpebral lobe revealed compact subepithelial layer in the overlying conjunctiva, followed by loosely scattered collagen bundles that contained the gland lobules.
    Conclusion: 3D-CR can be used to study the lacrimal gland microstructure, help fabricate a 3D scaffold for lacrimal gland bioprinting, and serve as guide for transconjunctival lacrimal gland targeted therapies i.e., 2.9 & 9 mm long needle to reach the orbital and palpebral lobe center, respectively in normal-size glands.
    MeSH term(s) Humans ; Aged ; Lacrimal Apparatus/diagnostic imaging ; Lacrimal Apparatus Diseases ; Microscopy, Electron ; Magnetic Resonance Imaging ; Bioengineering
    Language English
    Publishing date 2023-09-28
    Publishing country United States
    Document type Journal Article
    ZDB-ID 2208578-6
    ISSN 1937-5913 ; 1542-0124
    ISSN (online) 1937-5913
    ISSN 1542-0124
    DOI 10.1016/j.jtos.2023.09.010
    Database MEDical Literature Analysis and Retrieval System OnLINE

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