Download Como dibujar Manga vol. 4: el cuerpo humano How to Draw by Society for the Study of Manga Techniques PDF
By Society for the Study of Manga Techniques
Quantity four of the how you can Draw Manga sequence concentrates on recommendations for drawing human our bodies within the Anime variety. The drawing classes during this booklet are divided into the subsequent chapters-- bankruptcy 1: Head diversifications, bankruptcy 2: higher physique adaptations, bankruptcy three: Torso diversifications, and bankruptcy four: decrease physique diversifications.
Read or Download Como dibujar Manga vol. 4: el cuerpo humano How to Draw Manga: Bodies and Anatomy PDF
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Additional resources for Como dibujar Manga vol. 4: el cuerpo humano How to Draw Manga: Bodies and Anatomy
Labeling for versican and tenascin is present in all parts of the tendon and in all of the trochleae. In certain cases, where cells with distinctly cartilaginous morphology are present in the center of the trochlea, labeling for versican and keratan sulfate is absent in both the territorial and the interterritorial matrices. Aggrecan and link protein can also be detected in all parts of the tendon and in the trochlea (Fig. 15) Labeling is distributed homogeneously throughout the tendon’s ECM. However, labeling in the trochlea is predominantly pericellular and tends to be more pronounced toward the central region.
From Milz et al. 1998, with permission of Wiley-Liss) The Transverse Ligament of the Atlas 31 Labeling for aggrecan is detectable in the sesamoid ﬁbrocartilages of all extensor tendons (Fig. 9) and sometimes extends into the adjacent proximal and distal portions of the tendon. In a few cases, positive labeling for aggrecan occurred in regions of the tendons that do not label for chondroitin 6 sulfate (in neighboring sections). The intensity of labeling differs considerably between tendons: the strongest and most extensive labeling is seen in the extensor tendon of an index ﬁnger, the weakest in that of a thumb.
Bray et al. (1993) are of the opinion that type VI collagen serves as an anchoring structure between chondroitin sulfate/hyaluronic acid complexes, on the one hand, and type I collagen ﬁbrils, on the other. This arrangement would surround the collagen ﬁbrils with a strongly hydrated layer that would make easier the transportation of ﬂuids between the ﬁbrils. According to Burgeson and Nimni (1992), type VI collagen favorably inﬂuences the attachment of ﬁbroblasts to the collagenous network. The distribution of labeling for type VI collagen observed here could well be correlated with such a model.