Preservation of Upper Limb Function: What You Should Know
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Complex Regional Pain Syndrome Type I (Shoulder-Hand Syndrome) in an Elderly Patient After Open Cardiac Surgical Intervention; a Case Report
Eastern Journal of Medicine 16 (2011) 56-58 L. Ediz et al / CRPS type I after open cardiac Surgery Case Report Complex regional pain syndrome type I (shoulder-hand syndrome) in an elderly patient after open cardiac surgical intervention; a case report Levent Ediza*, Mehmet Fethi Ceylanb , Özcan Hıza, İbrahim Tekeoğlu c a Department of Physical Medicine and Rehabilitation, Yüzüncü Yıl University Medical Faculty, Van, Turkey b Department of Orthopaedics and Traumatology,Yüzüncü Yıl University Medical Faculty, Van, Turkey c Department of Rheumatology, Yüzüncü Yıl University Medical Faculty, Van, Turkey Abstract. We described the first case report in the literature who developed Complex Regional Pain Syndrome (CRPS type I) symptoms in his right shoulder and right hand within 15 days after open cardiac surgery and discussed shoulder-hand syndrome (CRPS type I) and frozen shoulder diagnosis along with the reasons of no report of CRPS type I in these patients. We also speculated whether frozen shoulder seen in postthoracotomy and postcardiac surgery patients might be CRPS type I in fact. Key words: Complex regional pain syndrome, cardiac surgery, frozen shoulder 1. Introduction Improper patient positioning, muscle division, perioperative nerve injury, rib spreading, and Complex Regional Pain Syndrome (CRPS) is consequent postoperative pain influence the complication of injuries which is seen at the patient's postoperative shoulder function and distal end of the affected area characterized by quality of life (5). In a study Tuten HR et al pain, allodyni, hyperalgesia, edema, abnormal retrospectively evaluated for the incidence of vasomotor and sudomotor activity, movement adhesive capsulitis of the shoulder of two disorders, joint stiffness, regional osteopenia, and hundred fourteen consecutive male cardiac dystrophic changes in soft tissue (1,2). -
Study Guide Medical Terminology by Thea Liza Batan About the Author
Study Guide Medical Terminology By Thea Liza Batan About the Author Thea Liza Batan earned a Master of Science in Nursing Administration in 2007 from Xavier University in Cincinnati, Ohio. She has worked as a staff nurse, nurse instructor, and level department head. She currently works as a simulation coordinator and a free- lance writer specializing in nursing and healthcare. All terms mentioned in this text that are known to be trademarks or service marks have been appropriately capitalized. Use of a term in this text shouldn’t be regarded as affecting the validity of any trademark or service mark. Copyright © 2017 by Penn Foster, Inc. All rights reserved. No part of the material protected by this copyright may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying, recording, or by any information storage and retrieval system, without permission in writing from the copyright owner. Requests for permission to make copies of any part of the work should be mailed to Copyright Permissions, Penn Foster, 925 Oak Street, Scranton, Pennsylvania 18515. Printed in the United States of America CONTENTS INSTRUCTIONS 1 READING ASSIGNMENTS 3 LESSON 1: THE FUNDAMENTALS OF MEDICAL TERMINOLOGY 5 LESSON 2: DIAGNOSIS, INTERVENTION, AND HUMAN BODY TERMS 28 LESSON 3: MUSCULOSKELETAL, CIRCULATORY, AND RESPIRATORY SYSTEM TERMS 44 LESSON 4: DIGESTIVE, URINARY, AND REPRODUCTIVE SYSTEM TERMS 69 LESSON 5: INTEGUMENTARY, NERVOUS, AND ENDOCRINE S YSTEM TERMS 96 SELF-CHECK ANSWERS 134 © PENN FOSTER, INC. 2017 MEDICAL TERMINOLOGY PAGE III Contents INSTRUCTIONS INTRODUCTION Welcome to your course on medical terminology. You’re taking this course because you’re most likely interested in pursuing a health and science career, which entails proficiencyincommunicatingwithhealthcareprofessionalssuchasphysicians,nurses, or dentists. -
Early Passive Motion After Surgery
www.western -ortho.com www.denvershoulder.com Early Passive Motion after Shoulder Surgery Passive motion involves someone else moving the affected arm through the motion described. Or, in the case of elbow flexion/extension, you can use your opposite (non-affected arm) to move through the motion. Do 5 repetitions of each stretch 3 times per day. When you feel a slight ‘tightness’ with your arm in the position diagrammed, hold that position for 30 seconds. If lying down is difficult, the stretches can be done while seated. Shoulder Flexion Support arm at the wrist and elbow. With the thumb pointed forward, gently bring the arm up and forward then back to the side. Shoulder Abduction Support arm at wrist and elbow. With the thumb pointed away from the body and palm up, gently bring the arm out to the side. www.western -ortho.com www.denvershoulder.com Shoulder Internal/External Rotation Support arm at wrist and elbow. With the elbow at the side and bent to a 90 degree angle, gently rotate the hand away from the body down toward the table the individual is lying on. Elbow Flexion/Extension Forearm Pronation/Supination Grasp the wrist of your affected arm with your unaffected With your elbow and forearm supported on a table, hand. With your affected elbow against your side and your gently turn forearm so your palm is down, then turn palm up, gently bend and straighten your elbow. forearm so your palm is up. This can be done actively (without assistance from your other hand). . -
Nerve Blocks for Surgery on the Shoulder, Arm Or Hand
The Association of Regional The Royal College of Anaesthetists of Great Anaesthesia – Anaesthetists Britain and Ireland United Kingdom Nerve blocks for surgery on the shoulder, arm or hand Information for patients and families www.rcoa.ac.uk/patientinfo First edition 2015 This leaflet is for anyone who is thinking about having a nerve block for an operation on the shoulder, arm or hand. It will be of particular interest to people who would prefer not to have a general anaesthetic. The leaflet has been written with the help of patients who have had a nerve block for their operation. You can find more information leaflets on the website www.rcoa.ac.uk/patientinfo. The leaflets may also be available from the anaesthetic department or pre-assessment clinic in your hospital. The website includes the following: ■ Anaesthesia explained (a more detailed booklet). ■ You and your anaesthetic (a shorter summary). ■ Your spinal anaesthetic. ■ Anaesthetic choices for hip or knee replacement. ■ Epidural pain relief after surgery. ■ Local anaesthesia for your eye operation. ■ Your child’s general anaesthetic. ■ Your anaesthetic for major surgery with planned high dependency care afterwards. ■ Your anaesthetic for a broken hip. Risks associated with your anaesthetic This is a collection of 14 articles about specific risks associated with having an anaesthetic or an anaesthetic procedure. It supplements the patient information leaflets listed above and is available on the website: www.rcoa.ac.uk/patients-and-relatives/risks. Throughout this leaflet and others in the series, we have used this symbol to highlight key facts. 2 NERVE BLOCKS FOR SURGERY ON THE SHOULDER, ARM OR HAND Brachial plexus block? The brachial plexus is the group of nerves that lies between your neck and your armpit. -
GLOSSARY of MEDICAL and ANATOMICAL TERMS
GLOSSARY of MEDICAL and ANATOMICAL TERMS Abbreviations: • A. Arabic • abb. = abbreviation • c. circa = about • F. French • adj. adjective • G. Greek • Ge. German • cf. compare • L. Latin • dim. = diminutive • OF. Old French • ( ) plural form in brackets A-band abb. of anisotropic band G. anisos = unequal + tropos = turning; meaning having not equal properties in every direction; transverse bands in living skeletal muscle which rotate the plane of polarised light, cf. I-band. Abbé, Ernst. 1840-1905. German physicist; mathematical analysis of optics as a basis for constructing better microscopes; devised oil immersion lens; Abbé condenser. absorption L. absorbere = to suck up. acervulus L. = sand, gritty; brain sand (cf. psammoma body). acetylcholine an ester of choline found in many tissue, synapses & neuromuscular junctions, where it is a neural transmitter. acetylcholinesterase enzyme at motor end-plate responsible for rapid destruction of acetylcholine, a neurotransmitter. acidophilic adj. L. acidus = sour + G. philein = to love; affinity for an acidic dye, such as eosin staining cytoplasmic proteins. acinus (-i) L. = a juicy berry, a grape; applied to small, rounded terminal secretory units of compound exocrine glands that have a small lumen (adj. acinar). acrosome G. akron = extremity + soma = body; head of spermatozoon. actin polymer protein filament found in the intracellular cytoskeleton, particularly in the thin (I-) bands of striated muscle. adenohypophysis G. ade = an acorn + hypophyses = an undergrowth; anterior lobe of hypophysis (cf. pituitary). adenoid G. " + -oeides = in form of; in the form of a gland, glandular; the pharyngeal tonsil. adipocyte L. adeps = fat (of an animal) + G. kytos = a container; cells responsible for storage and metabolism of lipids, found in white fat and brown fat. -
Stretching and Positioning Regime for Upper Limb
Information for patients and visitors Stretching and Positioning Regime for Upper Limb Physiotherapy Department This leaflet has been designed to remind you of the exercises you Community & Therapy Services have been taught, the correct techniques and who to contact with any queries. For more information about our Trust and the services we provide please visit our website: www.nlg.nhs.uk Information for patients and visitors Muscle Tone Muscle tone is an unconscious low level contraction of your muscles while they are at rest. The purpose of this is to keep your muscles primed and ready to generate movement. Several neurological causes may change a person’s muscle tone to increase or decrease resulting in a lack of movement. Over time, a lack of movement can cause stiffness, pain, and spasticity. In severe cases this may also lead to contractures. Spasticity Spasticity can be defined as a tightening or stiffness of the muscle due to increased muscle tone. It can interfere with normal functioning. It can also greatly increase fatigue. However, exercise, properly done, is vital in managing spasticity. The following tips may prove helpful: • Avoid positions that make the spasticity worse • Daily stretching of muscles to their full length will help to manage the tightness of spasticity, and allow for optimal movement • Moving a tight muscle to a new position may result in an increase in spasticity. If this happens, allow a few minutes for the muscles to relax • When exercising, try to keep head straight • Sudden changes in spasticity may -
Bone Limb Upper
Shoulder Pectoral girdle (shoulder girdle) Scapula Acromioclavicular joint proximal end of Humerus Clavicle Sternoclavicular joint Bone: Upper limb - 1 Scapula Coracoid proc. 3 angles Superior Inferior Lateral 3 borders Lateral angle Medial Lateral Superior 2 surfaces 3 processes Posterior view: Acromion Right Scapula Spine Coracoid Bone: Upper limb - 2 Scapula 2 surfaces: Costal (Anterior), Posterior Posterior view: Costal (Anterior) view: Right Scapula Right Scapula Bone: Upper limb - 3 Scapula Glenoid cavity: Glenohumeral joint Lateral view: Infraglenoid tubercle Right Scapula Supraglenoid tubercle posterior anterior Bone: Upper limb - 4 Scapula Supraglenoid tubercle: long head of biceps Anterior view: brachii Right Scapula Bone: Upper limb - 5 Scapula Infraglenoid tubercle: long head of triceps brachii Anterior view: Right Scapula (with biceps brachii removed) Bone: Upper limb - 6 Posterior surface of Scapula, Right Acromion; Spine; Spinoglenoid notch Suprspinatous fossa, Infraspinatous fossa Bone: Upper limb - 7 Costal (Anterior) surface of Scapula, Right Subscapular fossa: Shallow concave surface for subscapularis Bone: Upper limb - 8 Superior border Coracoid process Suprascapular notch Suprascapular nerve Posterior view: Right Scapula Bone: Upper limb - 9 Acromial Clavicle end Sternal end S-shaped Acromial end: smaller, oval facet Sternal end: larger,quadrangular facet, with manubrium, 1st rib Conoid tubercle Trapezoid line Right Clavicle Bone: Upper limb - 10 Clavicle Conoid tubercle: inferior -
Design of a Working Model of an Upper Limb Prosthesis: Wrist Mechanism
DESIGN OF A WORKING MODEL OF AN UPPER LIMB PROSTHESIS: WRIST MECHANISM BY SAHIL VIKAS DANGE A thesis submitted to the Graduate School|New Brunswick Rutgers, The State University of New Jersey in partial fulfillment of the requirements for the degree of Master of Science Graduate Program in Mechanical and Aerospace Engineering Written under the direction of Professor William Craelius and Professor Noshir A. Langrana and approved by New Brunswick, New Jersey October, 2017 ABSTRACT OF THE THESIS Design of a working model of an upper limb prosthesis: Wrist Mechanism by Sahil Vikas Dange Thesis Directors: Professor William Craelius and Professor Noshir A. Langrana This thesis demonstrates a new design for an upper limb prosthetic wrist that gives 3 independent degrees of freedom (DOFs) through individual mechanisms. A human wrist has 3 degrees of freedom i.e. Flexion-Extension, Radial- Ulnar deviation and Pronation-Supination. The upper limb prostheses that are currently available in the market generally provide 1 (usually Pronation- Supination) or at most 2 degrees of freedom, which is not sufficient for daily life. For this thesis, a new wrist having all the 3 DOFs was designed in the SolidWorks software, a prototype was 3D printed and a basic analysis of the mechanical properties of the model through SolidWorks simulation was carried out. The prototype mechanisms were then connected to servo motors, with potentiometers as their inputs, that were programmed through an arduino and were tested to see if they work as expected. Faithful recreation of the wrist motions was achieved and the range of motion (ROM) of this prosthesis was similar to the ROM of an actual human wrist. -
Human Functional Anatomy 213 Upper & Lower Limbs Compared
Human Functional Anatomy 213 week 6 1 Human Functional Anatomy 213 week 6 2 HUMAN FUNCTIONAL ANATOMY 213 DORSAL and VENTRAL, UPPER & LOWER LIMBS COMPARED PREAXIAL and POSTAXIAL THIS WEEKS LAB: Limbs evolved from paddles or fins, each with The hand and Foot 1. Dorsal and ventral sides 2. Preaxial and postaxial edges. In this lecture During Dorsal and ventral, Preaxial and postaxial development, Similarities in structure – Homology? human limbs were 1. Bones the same, but 2. Muscles rotations and 3. Nerves differential Muscles of the Shoulder and Hip/Arm and Thigh growth have The hand and foot modified the Muscles of the leg/foot and forearm/hand overall shape. The preaxial border is closer to the head and therefore supplied by more cranial nerves. We can identify the preaxial and postaxial borders in adult limbs by the first and fifth digits of the hand and foot Veins and nerves Human Functional Anatomy 213 week 6 3 Human Functional Anatomy 213 week 6 4 Similarities in structure - Homology PROXIMAL MUSCLES IN THE UPPER AND LOWER LIMBS Bones and joints Shoulder & Hip – Ball and socket joints Shoulder and arm Hip and thigh Humerus & Femur – Single bone in the proximal segment. Triceps Quadruceps etc Radial nerve Femoral nerve Knee & Elbow – hinge/uniaxial joints. Biceps etc Hamstrings Leg & Forearm – Two bones in the distal segment Musculocutaneous nerve Tibial nerve Tibia & Radius – Preaxial bones. Fibula & ulna – Postaxial bones Deltoid plus Gluteals & TFL posterior axillary muscles plus 6 lateral rotators Axillary nerve and post cord Gluteal nerves Ankle & Wrist – tarsals & carpals Even in the Pectorals Adductors hand and foot we Pectoral nerves Obturator nerve can find homologies between the carpal and tarsal bones. -
Anatomy, Shoulder and Upper Limb, Shoulder Muscles
Eovaldi BJ, Varacallo M. Anatomy, Shoulder and Upper Limb, Shoulder Muscles. [Updated 2018 Dec 3]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2018 Jan-. Available from: https://www.ncbi.nlm.nih.gov/books/NBK534836/ Anatomy, Shoulder and Upper Limb, Shoulder Muscles Authors Benjamin J. Eovaldi1; Matthew Varacallo2. Affilations 1 University of Tennessee HSC 2 Department of Orthopaedic Surgery, University of Kentucky School of Medicine Last Update: December 3, 2018. Introduction The shoulder joint (glenohumeral joint) is a ball and socket joint with the most extensive range of motion in the human body. The muscles of the shoulder dynamically function in performing a wide range of motion, specifically the rotator cuff muscles which function to move the shoulder and arm as well as provide structural integrity to the shoulder joint. The different movements of the shoulder are: abduction, adduction, flexion, extension, internal rotation, and external rotation.[1] The central bony structure of the shoulder is the scapula. All the muscles of the shoulder joint interact with the scapula. At the lateral aspect of the scapula is the articular surface of the glenohumeral joint, the glenoid cavity. The glenoid cavity is peripherally surrounded and reinforced by the glenoid labrum, shoulder joint capsule, supporting ligaments, and the myotendinous attachments of the rotator cuff muscles. The muscles of the shoulder play a critical role in providing stability to the shoulder joint. The primary muscle group that supports the shoulder joint is the rotator cuff muscles. The four rotator cuff muscles include:[2] • Supraspinatus • Infraspinatus • Teres minor • Subscapularis. Structure and Function The upper extremity is attached to the appendicular skeleton by way of the sternoclavicular joint. -
5 Common Causes of Shoulder Pain
5 Common Causes of Shoulder Pain Leslie B. Vidal, M.D. Orthopedic Associates, LLC 303-321-6600 Rotator Cuff Syndrome: Inflammation of rotator cuff tendons and subacromial bursitis, can proceed rotator cuff tear. History: Insidious onset of anterior and lateral shoulder pain, worse with reaching overhead and behind (putting dishes away in upper cabinet, reaching into the back seat of car). Patients often report positional night pain. Symptoms may be partially alleviated with NSAIDs and ice. Exam: Pain at the extremes of shoulder range of motion, no significant loss of motion. Strength is intact although may be slightly guarded due to pain. Impingement tests positive. Treatment: NSAIDs, Physical Therapy for scapular stabilizing exercises and rotator cuff strengthening. When to refer: If no improvement with 6 weeks of NSAIDs and PT, consider MRI to rule out rotator cuff tear. Consider referral to shoulder surgeon for ultrasound guided subacromial cortisone injection. Surgery can be considered for refractory cases. If there is significant loss of motion (see adhesive capsulitis) or weakness (may have rotator cuff tear), consider immediate referral as NSAIDs and PT may not be as effective in these cases. A history of trauma resulting in shoulder weakness should lead to a prompt referral to a shoulder surgeon, as this may represent an acute RCT. Instability: Subluxation or dislocation of the glenohumeral joint. Can be acute and traumatic and unidirectional; or recurrent, atraumatic and multidirectional. History: Patient may report a traumatic injury to the shoulder resulting in a dislocation requiring a reduction maneuver; or a more nonspecific history of shoulder pain and sense of instability that the patient is able to self-reduce. -
Comparison of the Upper and Lower Limbs-A Phylogenetic Concept
IOSR Journal of Dental and Medical Sciences (IOSR-JDMS) e-ISSN: 2279-0853, p-ISSN: 2279-0861.Volume 14, Issue 8 Ver. I (Aug. 2015), PP 14-16 www.iosrjournals.org Comparison of the Upper and Lower Limbs-A Phylogenetic Concept Dr.Vandana Sinam1, Dr.Thonthon Daimei2, I Deven Singh3, N Damayanti Devi4 1.Medical officer,2. Senior Resident,3. Assistant Proffessor,4. Professor and Head, Department of Anatomy Regional Institute of Medical Sciences, Imphal, Manipur Abstract: The upper and lower limbs of the human body are phylogenetically homologues of the forelimbs and hind limbs of the quadrupeds. Primates started lifting of the forelimbs off the ground for various functional adaptations as evolution progressed and this led to the deviation of the forelimbs from lower limbs. With the gradual diversification of the functions, morphological evolution of the two limbs follows closely leading to the differences in upper and the lower limbs in the human. Since the inception of the Anatomy as one of the curriculum in medical subjects, the anatomical position has been termed as one that the body stand erect with the eyes looking straight forward and the two upper limbs hanging by the side of the body with the palm facing forward. Therefore in this position the upper limb looked forward with the palm also accordingly faced forward too whilst with the thumb on the lateral side whilst in the lower limb, the big toe which is homologous to the thumb, is placed on the medial side. The anatomical position in the upper limb is not normally a comfortable position as it is kept in this position with effort.