By Klaus-Peter Wilhelm, Peter Elsner, Enzo Berardesca, Howard I. Maibach
Spanning the various developments that experience taken position within the box because the First version of this publication used to be released, this moment version emphasizes the imaging of the outside in its entirety, instead of focusing completely on floor layers. the second one version comprises new chapters on applied sciences equivalent to in vivo confocal laser scanning microscopy, Raman spectroscopy, optical coherence tomography, nuclear magnetic imaging, high-resolution ultrasound, in vivo dermis topometry, and multi-photon imaging of the surface.
Read Online or Download Bioengineering of the Skin: Skin Imaging & Analysis, 2nd Edition (Dermatology: Clinical & Basic Science) PDF
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Additional info for Bioengineering of the Skin: Skin Imaging & Analysis, 2nd Edition (Dermatology: Clinical & Basic Science)
26 Vogt and Ermert FIGURE 10 Image fusion (melanocytic nevus): (A) 100 MHz range high-frequency ultrasound image with segmented skin surface and nevus area; (B) registered high-frequency ultrasound and epiluminescence microscopy image data in the same coordinate system. surface and nevus area were segmented in the individual ultrasound images (Fig. 10A). Segmentation of the surface was done automatically by applying threshold segmentation. HFUS images were spatially aligned to the acquired ELM surface image by applying a nonrigid registration with manually selected landmarks.
19. New York: Plenum Press, 1992. 7. Ermert H, Vogt M, Passmann C, et al. High frequency ultrasound (50–150 MHz) in dermatology. In: Altmeyer P, Hoffmann K, Stu¨cker M, eds. Skin Cancer and UV Radiation. Berlin, Heidelberg, New York: Springer, 1997:1023–1051. 8. Ermert H, Vogt M. High frequency ultrasonic imaging and its applications in skin. Proc Int Soc Optical Eng (SPIE) 1999:44–55. Multimodal Imaging—What Can We Expect? 29 9. Vogt M, Kaspar K, Altmeyer P, Hoffmann K, El Gammal S. High frequency ultrasound for high-resolution skin imaging.
As the pilosebaceous units extend down into the subcutaneous fat, they act as anchoring structures when a dermal edema occurs. In a weal, follicle openings are therefore often visible as indentations. On the other hand, contraction of the arrector pili muscles leads to cutis anserina (goose flesh) with prominent follicles. Hair follicle openings are markedly larger than sweat gland orifices, which are found preferably in the middle of the triangles and rhomboids formed by the glyphics (42). For investigation of hair follicles (with the exception of the scalp), cyanoacrylate surface biopsies are advantageous (26,42,43).