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A Method for Visual Determination of Sex, Using the Human Hip Bone
AMERICAN JOURNAL OF PHYSICAL ANTHROPOLOGY 117:157–168 (2002) A Method for Visual Determination of Sex, Using the Human Hip Bone Jaroslav Bruzek* U.M.R. 5809 du C.N.R.S., Laboratoire d’Anthropologie des Populations du Passe´ Universite´ Bordeaux I, 33405 Talence, France KEY WORDS human pelvis; sex determination; morphological traits; method ABSTRACT A new visual method for the determina- identify sex in only 3%. The advantage of this new method tion of sex using the human hip bone (os coxae) is pro- is a reduction in observer subjectivity, since the evalua- posed, based on a revision of several previous approaches tion procedure cannot involve any anticipation of the re- which scored isolated characters of this bone. The efficacy sult. In addition, this method of sex determination in- of the methodology is tested on a sample of 402 adults of creases the probability of a correct diagnosis with isolated known sex and age of French and Portuguese origins. fragments of the hip bone, provided that a combination of With the simultaneous use of five characters of the hip elements of one character is found to be typically male or bone, it is possible to provide a correct sexual diagnosis in female. Am J Phys Anthropol 117:157–168, 2002. 95% of all cases, with an error of 2% and an inability to © 2002 Wiley-Liss, Inc. Correct sex identification of the human skeleton is The method proposed by Iscan and Derrick (1984) important in bioarcheological and forensic practice. provides an accuracy level of 90% (Iscan and Dun- Current opinion regards the hip bone (os coxae) as lap, 1983), but it cannot be regarded as equivalent to providing the highest accuracy levels for sex deter- the results found with methods using the entire hip mination. -
Pelvic Anatomyanatomy
PelvicPelvic AnatomyAnatomy RobertRobert E.E. Gutman,Gutman, MDMD ObjectivesObjectives UnderstandUnderstand pelvicpelvic anatomyanatomy Organs and structures of the female pelvis Vascular Supply Neurologic supply Pelvic and retroperitoneal contents and spaces Bony structures Connective tissue (fascia, ligaments) Pelvic floor and abdominal musculature DescribeDescribe functionalfunctional anatomyanatomy andand relevantrelevant pathophysiologypathophysiology Pelvic support Urinary continence Fecal continence AbdominalAbdominal WallWall RectusRectus FasciaFascia LayersLayers WhatWhat areare thethe layerslayers ofof thethe rectusrectus fasciafascia AboveAbove thethe arcuatearcuate line?line? BelowBelow thethe arcuatearcuate line?line? MedianMedial umbilicalumbilical fold Lateralligaments umbilical & folds folds BonyBony AnatomyAnatomy andand LigamentsLigaments BonyBony PelvisPelvis TheThe bonybony pelvispelvis isis comprisedcomprised ofof 22 innominateinnominate bones,bones, thethe sacrum,sacrum, andand thethe coccyx.coccyx. WhatWhat 33 piecespieces fusefuse toto makemake thethe InnominateInnominate bone?bone? PubisPubis IschiumIschium IliumIlium ClinicalClinical PelvimetryPelvimetry WhichWhich measurementsmeasurements thatthat cancan bebe mademade onon exam?exam? InletInlet DiagonalDiagonal ConjugateConjugate MidplaneMidplane InterspinousInterspinous diameterdiameter OutletOutlet TransverseTransverse diameterdiameter ((intertuberousintertuberous)) andand APAP diameterdiameter ((symphysissymphysis toto coccyx)coccyx) -
Gluteal Region-II
Gluteal Region-II Dr Garima Sehgal Associate Professor King George’s Medical University UP, Lucknow Structures in the Gluteal region • Bones & joints • Ligaments Thickest muscle • Muscles • Vessels • Nerves Thickest nerve • Bursae Learning Objectives By the end of this teaching session Gluteal region –II all the MBBS 1st year students must be able to: • Enumerate the nerves of gluteal region • Write a short note on nerves of gluteal region • Describe the location & relations of sciatic nerve in gluteal region • Enumerate the arteries of gluteal region • Write a short note on arteries of gluteal region • Enumerate the arteries taking part in trochanteric and cruciate anastomosis • Write a short note on trochanteric and cruciate anastomosis • Enumerate the structures passing through greater sciatic foramen • Enumerate the structures passing through lesser sciatic foramen • Enumerate the bursae in relation to gluteus maximus • Enumerate the structures deep to gluteus maximus • Discuss applied anatomy Nerves of Gluteal region (all nerves in gluteal region are branches of sacral plexus) Superior gluteal nerve (L4,L5, S1) Inferior gluteal nerve (L5, S1, S2) FROM DORSAL DIVISIONS Perforating cutaneous nerve (S2,S3) Nerve to quadratus femoris (L4,L5, S1) Nerve to obturator internus (L5, S1, S2) FROM VENTRAL DIVISIONS Pudendal nerve (S2,S3,S4) Sciatic nerve (L4,L5,S1,S2,S3) Posterior cutaneous nerve of thigh FROM BOTH DORSAL &VENTRAL (S1,S2) & (S2,S3) DIVISIONS 1. Superior Gluteal nerve (L4,L5,S1- dorsal division) 1 • Enters through the greater 3 sciatic foramen • Above piriformis 2 • Runs forwards between gluteus medius & gluteus minimus • SUPPLIES: 1. Gluteus medius 2. Gluteus minimus 3. Tensor fasciae latae 2. -
Role of Greater Sciatic Notch in Sexing Human Hip Bones
International Journal of Recent Trends in Science And Technology, ISSN 2277-2812 E-ISSN 2249-8109, Volume 7, Issue 3, 2013 pp 119-123 Role of Greater Sciatic Notch in Sexing Human Hip Bones Rajashree Sheelawant Raut 1*, Prakash B. Hosmani 2, P. R. Kulkarni 3 1Assistant Professor, Department of Anatomy, B. J. Government Medical College, Pune, Maharashtra, INDIA. 2Associate Professor, Department of Anatomy, Dr. V. M. Government Medical College, Solapur, Maharashtra, INDIA. 3 Professor and Head, Department of Anatomy, Government Medical College, Latur, Maharashtra, INDIA. *Corresponding Address: [email protected] Research Article Abstract: Identification of the deceased person from bones is the in archaeological collections that they cannot be used for most critical problem faced by anatomist, forensic science experts sex determination. When pubic material is not preserved, & anthropologists. Skeletal remains have been used for sexing the sex determinations must be made using other less individual as bones of the body are last to perish after death. Hip bone, especially t he greater sciatic notch is valuable in deformed diagnostic features. The greater sciatic notch is especially bones because it is highly sexually dimorphic, is resistant to valuable in such situations because it is highly sexually damage, and thus can often be scored in poorly preserved dimorphic, is resistant to damage, and thus can often be skeletons. In present study one hundred and eighty three adult hip scored in poorly preserved skeletons[3]. Many attempts bones of known sex (125 male and 58 female) are studied for have been made to describe sex differences in the sciatic various parameters of greater sciatic notch. -
Sexing of Human Hip Bones of Indian Origin by Discriminant Function Analysis
JOURNAL OF FORENSIC AND LEGAL MEDICINE Journal of Forensic and Legal Medicine 14 (2007) 429–435 www.elsevier.com/jflm Original Communication Sexing of human hip bones of Indian origin by discriminant function analysis S.G. Dixit MD (Principal Investigator) *, S. Kakar MS (Guide), S. Agarwal MS (Co-Guide), R. Choudhry MS (Co-Guide) Department of Anatomy, Lady Hardinge Medical College & S.S.K. Hospital, New Delhi, India Received 5 September 2006; received in revised form 6 March 2007; accepted 23 March 2007 Available online 20 July 2007 Abstract The present study was carried out in terms of discriminant analysis and was conducted on 100 human hip bones (of unknown sex) of Indian origin. Based on morphological features, each of the hip bone was rated on a scale of 1–3 for sexing. Twelve measurements and five indices were recorded. The results of discriminant function analysis showed that the acetabular height (vertical diameter) and indices 1 (total pelvic height/acetabular height), 2 (midpubic width/acetabular height) and 3 (pubic length/acetabular height) were very good measures for discriminating sexes. Pelvic brim depth, minimum width of ischiopubic ramus and indices 4 (pelvic brim chord · pelvic brim depth) and 5 (pubic length · 100/ischial length) were also good discriminators of sex. The remaining parameters were not significant as they showed a lot of overlap between male and female categories. The results indicated that one exclusive criterion for sexing was index 3 (pubic length/acetabular height). In comparison with the morphological criteria, the abovementioned index caused 25% and 10.25% increase in the hip bones of female and male category, respectively. -
H20/1, H20/2, H20/3, H20/4 (1000285 1000286 1000287 1000288) Latin
…going one step further H20/1 (1000285) H20/2 (1000286) H20/3 (1000287) H20/4 (1000288) H20/1, H20/2, H20/3, H20/4 (1000285_1000286_1000287_1000288) Latin H20/1, H20/2, H20/3, H20/4 H20/2, H20/3, H20/4 H20/4 1 Promontorium 38 Lig. longitudinale anterius 78 A. iliaca externa 2 Processus articularis 39 Membrana obturatoria 79 V. iliaca externa superior 40 Lig. sacrospinale 80 A. iliaca interna 3 Vertebra lumbalis V 41 Lig. sacrotuberale 81 V. iliaca interna 4 Processus costalis 42 Lig. inguinale 82 A. iliaca communis dextra 5 Discus intervertebralis 43 Ligg. sacroiliaca anteriora 83 V. cava inferior 6 Crista iliaca 44 Lig. iliolumbale 84 Pars abdominalis aortae 7 Ala ossis ilii 45 Ligg. sacroiliaca interossea 85 A. iliaca communis sinistra 8 Spina iliaca anterior 46 Lig. sacroiliacum posterius 86 N. ischiadicus superior 47 Lig. supraspinale 87 A. femoralis 9 Spina iliaca anterior 88 Plexus sacralis inferior 89 N. dorsalis clitoridis 10 Acetabulum H20/3, H20/4 90 N. pudendus 11 Foramen obturatum 48 Rectum 91 M. piriformis 12 Ramus ossis ischii 49 Ovarium 92 Nn. rectales inferiores 13 Ramus superior ossis pubis 50 Tuba uterina 93 Nn. perineales 14 Ramus inferior ossis pubis 51 Uterus 94 Nn. labiales posteriores 15 Tuberculum pubicum 52 Lig. ovarii proprium 95 V. femoralis 16 Crista pubica 53 Vesica urinaria 96 V. iliaca communis sinistra 17 Symphysis pubica 54 Membrana perinei 97 A. glutealis superior 18 Corpus ossis pubis 55 M. obturatorius internus 98 A. glutealis inferior 19 Tuber ischiadicum 56 M. transversus perinei 99 A. pudenda interna 20 Spina ischiadica profundus 100 ® A. -
Lab #23 Anal Triangle
THE BONY PELVIS AND ANAL TRIANGLE (Grant's Dissector [16th Ed.] pp. 141-145) TODAY’S GOALS: 1. Identify relevant bony features/landmarks on skeletal materials or pelvic models. 2. Identify the sacrotuberous and sacrospinous ligaments. 3. Describe the organization and divisions of the perineum into two triangles: anal triangle and urogenital triangle 4. Dissect the ischiorectal (ischioanal) fossa and define its boundaries. 5. Identify the inferior rectal nerve and artery, the pudendal (Alcock’s) canal and the external anal sphincter. DISSECTION NOTES: The perineum is the diamond-shaped area between the upper thighs and below the inferior pelvic aperture and pelvic diaphragm. It is divided anatomically into 2 triangles: the anal triangle and the urogenital (UG) triangle (Dissector p. 142, Fig. 5.2). The anal triangle is bounded by the tip of the coccyx, sacrotuberous ligaments, and a line connecting the right and left ischial tuberosities. It contains the anal canal, which pierced the levator ani muscle portion of the pelvic diaphragm. The urogenital triangle is bounded by the ischiopubic rami to the inferior surface of the pubic symphysis and a line connecting the right and left ischial tuberosities. This triangular space contains the urogenital (UG) diaphragm that transmits the urethra (in male) and urethra and vagina (in female). A. Anal Triangle Turn the cadaver into the prone position. Make skin incisions as on page 144, Fig. 5.4 of the Dissector. Reflect skin and superficial fascia of the gluteal region in one flap to expose the large gluteus maximus muscle. This muscle has proximal attachments to the posteromedial surface of the ilium, posterior surfaces of the sacrum and coccyx, and the sacrotuberous ligament. -
Alt Ekstremite Eklemleri
The Lower Limb Sevda LAFCI FAHRİOĞLU, MD.PhD. The Lower Limb • The bones of the lower limb form the inferior part of the appendicular skeleton • the organ of locomotion • for bearing the weight of body – stronger and heavier than the upper limb • for maintaining equilibrium The Lower Limb • 4 parts: – The pelvic girdle (coxae) – The thigh – The leg (crus) – The foot (pes) The Lower Limb • The pelvic girdle: • formed by the hip bones (innominate bones-ossa coxae) • Connection: the skeleton of the lower limb to the vertebral column The Lower Limb • The thigh • the femur • connecting the hip and knee The Lower Limb • The leg • the tibia and fibula • connecting the knee and ankle The Lower Limb • The foot – distal part of the ankle – the tarsal bones, metatarsal bones, phalanges The Lower Limb • 4 parts: – The pelvic girdle – The thigh – The leg – The foot The pelvic girdle Hip • the area from the iliac crest to the thigh • the region between the iliac crest and the head of the femur • formed by the innominate bones-ossa coxae The hip bone os coxae • large and irregular shaped • consists of three bones in childhood: – ilium – ischium •fuse at 15-17 years •joined in adult – pubis The hip bone 1.The ilium • forms the superior 2/3 of the hip bone • has ala (wing), is fan-shaped • its body representing the handle • iliac crest: superior margin of ilium The hip bone the ilium • iliac crest – internal lip (labium internum) – external lips (labium externum) The hip bone the ilium • iliac crest end posteriorly “posterior superior iliac spine” at the level of the fourth lumbar vertebra bilat.* • iliac crest end anteriorly “anterior superior iliac spine – easily felt – visible if you are not fatty • *: it is important for lumbar puncture The hip bone the ilium • Tubercle of the crest is located 5cm posterior to the anterior superior iliac spine • ant. -
Curvature of the Greater Sciatic Notch in Sexing the Human Pelvis HIDEO TAKAHASHI1*
ANTHROPOLOGICAL SCIENCE Vol. 000, 000–000, 2006 Curvature of the greater sciatic notch in sexing the human pelvis HIDEO TAKAHASHI1* 1Department of Anatomy, Dokkyo University School of Medicine, 880 Kitakobayashi, Mibu-machi, Shimotuga-gun, Tochigi, 321-0293 Japan Received 11 November 2005; accepted 26 January 2006 Abstract The maximum curvature of the greater sciatic notch and two standardized indices were cal- culated for use in the sexing of human hip bones. This was done by means of quadratic regression of the contour points of the greater sciatic notch. The new variables are not directly affected by the osteo- metric landmarks (e.g. ischial spine, tubercle of the piriformis, and posterior inferior iliac spine) which determine the greatest width of the notch. These landmarks are, however, known to be ill-defined on occasion, but nevertheless have been used to derive the conventional depth-to-width index and angles of the sciatic notch. The curvature parameter and its new indices were applied to the sciatic notch of 164 Japanese hip bones of known sex (104 males and 61 females). The accuracy of the new variables in the determination of sex was assessed and compared with that of the conventional indices and angles of the sciatic notch. The best discriminating variable was found to be the posterior angle with an accu- racy of 91%. The new parameters of the present study that represent localized shape of the sharply curved edge of the notch diagnosed sex with an accuracy of 88%. In paleoanthropological or forensic cases, using the maximum curvature of the sciatic notch and its indices may be applicable to sexing the hip bones of specimens with postmortem damage. -
Periacetabular Osteotomy (PAO) of the Hip
UW HEALTH SPORTS REHABILITATION Rehabilitation Guidelines For Periacetabular Osteotomy (PAO) Of The Hip The hip joint is composed of the femur (the thigh bone) and the Lunate surface of acetabulum acetabulum (the socket formed Articular cartilage by the three pelvic bones). The Anterior superior iliac spine hip joint is a ball and socket joint Head of femur Anterior inferior iliac spine that not only allows flexion and extension, but also rotation of the Iliopubic eminence Acetabular labrum thigh and leg (Fig 1). The head of Greater trochanter (fibrocartilainous) the femur is encased by the bony Fat in acetabular fossa socket in addition to a strong, (covered by synovial) Neck of femur non-compliant joint capsule, Obturator artery making the hip an extremely Anterior branch of stable joint. Because the hip is Intertrochanteric line obturator artery responsible for transmitting the Posterior branch of weight of the upper body to the obturator artery lower extremities and the forces of Obturator membrane Ischial tuberosity weight bearing from the foot back Round ligament Acetabular artery up through the pelvis, the joint (ligamentum capitis) Lesser trochanter Transverse is subjected to substantial forces acetabular ligament (Fig 2). Walking transmits 1.3 to Figure 1 Hip joint (opened) lateral view 5.8 times body weight through the joint and running and jumping can generate forces across the joint fully form, the result can be hip that is shared by the whole hip, equal to 6 to 8 times body weight. dysplasia. This causes the hip joint including joint surfaces and the to experience load that is poorly previously-mentioned acetabular The labrum is a circular, tolerated over time, resulting in labrum. -
The Axial Skeleton – Hyoid Bone
Marieb’s Human Anatomy and Physiology Ninth Edition Marieb Hoehn Chapter 7 The Axial and Appendicular Skeleton Lecture 14 1 Lecture Overview • Axial Skeleton – Hyoid bone – Bones of the orbit – Paranasal sinuses – Infantile skull – Vertebral column • Curves • Intervertebral disks –Ribs 2 The Axial Skeleton – Hyoid Bone Figure from: Saladin, Anatomy & Physiology, McGraw Hill, 2007 Suspended from the styloid processes of the temporal bones by ligaments and muscles The hyoid bone supports the larynx and is the site of attachment for the muscles of the larynx, pharynx, and tongue 3 1 Axial Skeleton – the Orbit See Fig. 7.6.1 in Martini and Fig. 7.20 in Figure: Martini, Right Hole’s Textbook Anatomy & Physiology, Optic canal – Optic nerve; Prentice Hall, 2001 opthalmic artery Superior orbital fissure – Oculomotor nerve, trochlear nerve, opthalmic branch of trigeminal nerve, abducens nerve; opthalmic vein F Inferior orbital fissure – Maxillary branch of trigeminal nerve E Z S L Infraorbital groove – M N Infraorbital nerve, maxillary branch of trigeminal nerve, M infraorbital artery Lacrimal sulcus – Lacrimal sac and tearduct *Be able to label a diagram of the orbit for lecture exam 4 Nasal Cavities and Sinuses Paranasal sinuses are air-filled, Figure: Martini, mucous membrane-lined Anatomy & Physiology, chambers connected to the nasal Prentice Hall, 2001 cavity. Superior wall of nasal cavities is formed by frontal, ethmoid, and sphenoid bones Lateral wall of nasal cavities formed by maxillary and lacrimal bones and the conchae Functions of conchae are to create swirls, turbulence, and eddies that: - direct particles against mucus - slow air movement so it can be warmed and humidified - direct air to superior nasal cavity to olfactory receptors 5 Axial Skeleton - Sinuses Sinuses are lined with mucus membranes. -
Anatomic Study of Innervation of the Anterior Hip Capsule: Implication
Regional Anesthesia & Pain Medicine: first published as 10.1097/AAP.0000000000000701 on 1 February 2018. Downloaded from CHRONIC AND INTERVENTIONAL PAIN ORIGINAL ARTICLE Anatomic Study of Innervation of the Anterior Hip Capsule Implication for Image-Guided Intervention Anthony J. Short, MBBS,* Jessi Jo G. Barnett,† Michael Gofeld, MD,‡ Ehtesham Baig, MD,‡ KarenLam,MD,‡ Anne M.R. Agur, PhD,† and Philip W.H. Peng, MBBS, FRCPC, Founder (Pain Medicine)‡§ develop painful hip OA by the age of 85 years.1 The management Background and Objectives: The purpose of this cadaveric study was strategies consist of pharmacologic treatments, physical therapy, to determine the pattern of anterior hip capsule innervation and the associ- interventional techniques, and surgery.2 Total hip arthroplasty is ated bony landmarks for image-guided radiofrequency denervation. considered for patients with advanced OA and moderate to severe Methods: Thirteen hemipelvises were dissected to identify innervation of symptoms.3 New, noninvasive treatment options need to be devel- the anterior hip capsule. The femoral (FN), obturator (ON), and accessory oped for patients who cannot undergo surgery and for those with obturator (AON) nerves were traced distally, and branches supplying the severe postoperative pain. Radiofrequency denervation (RFD), anterior capsule documented. The relationships of the branches to bony known to be effective for facet and sacroiliac joint arthritis,4 is landmarks potentially visible with ultrasound were identified. now emerging as a possible treatment for chronic hip pain. In a re- Results: The anterior hip capsule received innervation from the FNs and view article, Gupta et al5 described 8 case reports/case series ONs in all specimens and the AON in 7 of 13 specimens.