• Title/Summary/Keyword: Digital artery

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Anatomic Variation of the Common Palmar Digital Nerves and Arteries

  • Tian, Dong;Fu, Maoyong
    • Journal of Korean Neurosurgical Society
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    • v.57 no.3
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    • pp.219-220
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    • 2015
  • Variations in the course and distribution of common palmar digital nerves and arteries are rare. A classic common palmar digital nerves and arteries are defined as concomitant. During routine dissection classes to undergraduate medical students we observed formation of each common palmar digital nerve divided into 2 or 3 branches and formed a ring enclosing the corresponding common palmar digital artery. Knowledge of the anatomical variations of the common palmar digital nerves and arteries is crucial for safe and successful hand surgery.

The Reverse Digital Artery Flap for Finger Tip Reconstruction (수지첨부 손상재건을 위한 수지부 역혈행성 도서형 피판술)

  • Han, Dong-Gil;Ahn, Ki-Young;Park, Dae-Hwan
    • Archives of Reconstructive Microsurgery
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    • v.7 no.2
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    • pp.108-113
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    • 1998
  • Reverse digital artery flaps were performed successfully to resurface the fingertip defect in 13 patients as noninnervated pattern and in 12 patients as innervated pattern from March 1993 to February 1996. No loss of flap in this series was noted. Refinements in flap design and surgical technique resulted in favourable functional and ethetic results. The average two-point discrimination of the reconstructed fingertip was 7.2mm and 4.5mm in the noninnervated and innervated flaps, respectively. This flap is an one of the ideal and reliable option for reconstruction of fingertip defects.

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Tracheo-Innominate Artery Fistula -a case report- (기관-무명 동맥류 -수술치험 1례-)

  • 최창휴;김삼현;박성식;류경민;김재현;서필원
    • Journal of Chest Surgery
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    • v.33 no.5
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    • pp.436-439
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    • 2000
  • Tracheo-innominate artery fistula is a rare, but it is one of the gravest complications next to tracheostromy. Early recognition and prompt surgical management is mandatory. The patient was a 66 year old women with MCA infarct who maintained tracheostomy for lyear. She had respiratory arrest due to the excessive bleeding through the tracheostomy site. We report an successful experience for control of bleeding by an innominate artery fistula division and primay suture closure under direct digital compression.

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Left pulmonary artery agenesis - One Case Report - (좌측 폐동맥 형성 부전증 : 수술치험 1례)

  • 김용환
    • Journal of Chest Surgery
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    • v.24 no.1
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    • pp.83-87
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    • 1991
  • A unilateral pulmonary artery agenesis, which develops occasionally as one of the associated anomalies in congenital cardiovascular defect like as tetralogy of Fallot, is very rare anomaly as an isolated congenital defect. The diagnostic approach for the pulmonary artery agenesis is first suggested by the unique appearance of the involved lung on a routinely checked chest roentgenogram, because most patients are asymptomatic unless pulmonary infection had been superimposed. We have recently experienced a case of left pulmonary artery agenesis, which was diagnosed by perfusion scan, digital subtraction angiogram and then treated by left pneumonectomy in a 9 year-old boy, and presented hereby with the review of relevant literature.

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Analysis on Ischemic Cerebrovascular of Middle Age and Oldest-Old Age by Using Magnetic Resonance Imaging (자기공명영상을 이용한 중년 및 초고령의 허혈성 뇌혈관 호발 부위에 대한 분석)

  • Seoung, Youl-Hun
    • Journal of Digital Convergence
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    • v.10 no.9
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    • pp.391-396
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    • 2012
  • The purpose of this study was to present basic research data to utilize magnetic resonance imaging (MRI) with analyzing intracerebral regional distributions of ischemic cerebrovascular disease of middle aged and oldest-old aged people. We retrospectively analyzed middle-aged group (average age of 44.2 year-old, 43 males, 26 females) and oldest-old aged group (average age of 84.7 year-old, 58 males, 71 females) who taken MRI screening for ischemic cerebrovascular disease from May 2006 year to January 2008 year. The intracerebral vascular were classified into 8 vessels, which anterior communication artery (ACoA), posterior communication artery (PCoA), anterior cerebral artery (ACA), middle cerebral artery (MCA), posterior cerebral artery (PCA), internal carotid artery (ICA), common carotid artery(CCA), and basilar artery (BA). The result of middle-aged group showed that more ischemic cerebrovascular diseases appeared in men than women, and it affected in MCA mostly. In oldest-old aged group, ischemic cerebrovascular diseases occurred evenly spaced in intracerebral region of right, left, and both vessels, and women have more than men. For men, the most occurred in ICA and for women the most occurred in MCA. Specially middle-aged group in men showed that more ischemic cerebrovascular diseases in MCA appeared than oldest-old aged group in men. It is suggested that the analysis on ischemic cerebrovascular could be helpful in the clinical diagnosis and treatment.

External Carotid Artery Angioplasty and Stenting Followed by Superficial Temporal Artery to Middle Cerebral Artery Anastomosis

  • Ko, Jun-Kyeung;Lee, Sang-Weon;Lee, Tae-Hong;Choi, Chang-Hwa
    • Journal of Korean Neurosurgical Society
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    • v.46 no.5
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    • pp.488-491
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    • 2009
  • A 31-year-old man presented with right hemiparesis, and magnetic resonance imaging revealed a small infarct at left basal ganglia. Digital subtraction angiography showed left cervical internal carotid artery (ICA) occlusion and severe stenosis of the ipsilateral external carotid artery (ECA) with collateral cerebral circulation fed by ECAs. Based on the results of a functional evaluation of cerebral blood flow, we performed preventive ECA angioplasty and stenting for advanced ECA stenosis to ensure sufficient blood flow to the superficial temporal artery. Eight weeks later, superficial temporal artery to middle cerebral artery (STA-MCA) anastomosis was performed. His postoperative course was uneventful and no additional transient ischemic attacks have occurred. To our knowledge, this is the first report of preventive angioplasty and stenting for advanced narrowing of an ECA before STA-MCA anastomosis for ipsilateral ICA occlusion.

Reconstruction of Fingertip Amputation by Using Digital Artery Perforator Flap (수부동맥 관통 피판을 이용한 손가락끝 절단의 재건)

  • Ha, Young In;Jung, Sung Gyun;Shin, Ho Seong;Park, Eun Soo;Park, Jang Woo;Choi, Hwan Jun
    • Archives of Plastic Surgery
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    • v.35 no.4
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    • pp.483-486
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    • 2008
  • Purpose: Fingertip injuries are the most common hand injuries and may lead to significant disability. Knowledge of fingertip anatomy is mandatory to treat these injuries effectively. All surgical techniques used for coverage of fingertip injuries must be based on the nature of the injury and the patient's age. Many authors have studied the method of fingertip reconstruction because goals of these treatments should include maintaining length, sensibility, motions, and appearance. The purpose of this study is to evaluate the effect of digital artery perforator flap for fingertip reconstruction without aesthetic and functional problems. Methods: From November 2006 to March 2007, the authors performed fingertip reconstruction on 3 fingers of 3 patients, aged between 41 to 54 years (average age, 47 years) using digital artery perforator flap. Results: All fingers recovered successfully and there were no necrosis of the flap. We followed up 3 cases more than 5 months. Light touch and temperature sensation could be detected in all flaps and the static two-point discrimination test was 8 mm. Conclusion: This flap is an alternative choice for coverage of fingertip defects. This method also takes short time to procedure and to recovery. The digital artery perforator flap has never been reported in Korea, however it is considered as a useful method for treatment of fingertip injury.

Hand Reconstruction Using Anterolateral Thigh Free Flap by Terminal Perforator-to-Digital Artery Anastomosis: Retrospective Analysis

  • Jin Soo Kim;Ho Hyung Lee;Sung Hoon Koh;Dong Chul Lee;Si Young Roh;Kyung Jin Lee
    • Archives of Plastic Surgery
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    • v.51 no.1
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    • pp.87-93
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    • 2024
  • This study aimed to analyze cases of anterolateral thigh (ALT) free flap used for hand reconstruction with terminal perforator-to-digital artery anastomosis. Patients who underwent ALT free flap placement with terminal perforator-to-digital artery anastomosis for hand reconstruction between January 2011 and August 2021 were included. The number, length, and diameter of the perforators and veins, flap size, and operative time were investigated through a retrospective review of charts and photographs. The occurrences of arterial thrombosis, venous thrombosis, arterial spasm, and flap necrosis were analyzed. In total, 50 patients were included in this study. The mean diameter and length of the perforators were 0.68 mm and 3.25 cm, respectively, and the mean number of veins anastomosed was 1.88, with a mean diameter of 0.54 mm. Complications included four cases of arterial thrombosis, one case of venous thrombosis, seven cases of partial necrosis, and one case of total flap failure. Regression analysis showed that a longer perforator was associated with arterial thrombosis whereas larger flap size and number of anastomosed veins were associated with partial necrosis (p < 0.05). The terminal perforator-to-digital artery anastomosis offers advantages in using compact free flaps with short pedicle lengths to cover small hand defects.

Peripheral Periarterial Sympathectomy for the Treatment of Raynaud's Phenomenon(Case Report) (말초 동맥 교감 신경 절제술을 이용한 레이노드 현상의 치료(증례 보고))

  • Lee, Kwang-Suk;Park, Jong-Woong;Suh, Dong-Hoon
    • Archives of Reconstructive Microsurgery
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    • v.6 no.1
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    • pp.111-116
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    • 1997
  • The treatment of chronic digital pain and cold intolerance due to Raynaud's phenomenon is quite difficult especially it is combined with scleroderma. Several surgical trial such as cervicothoracic sympathectomy have been attempted for the medically unresponsible Raynaud's phenomenon, but their results were unsatisfactory. We have tried peripheral periarterial sympathectomy for the 44 years old female patient who had medically unresponsible severe Raynaud's phenomenon with scleroderma. Periarterial adventitial stripping was performed at the level of wrist, superficial palmar arch, common digital artery and proper digital artery about 1.5-2 cm in length. Preoperative angiography and radioactive angiography were done and preoperatively and postoperatively the blood flow was measured by the desk top computer-aided histogram. Both hands digital pain were markedly reduced after operation and blood flow increased as compaired with the preoperative measure.

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Anatomy of Large Intestine Meridian Muscle in human (수양명경근(手陽明經筋)의 해부학적(解剖學的) 고찰(考察))

  • Sim Young;Park Kyoung-Sik;Lee Joon-Moo
    • Korean Journal of Acupuncture
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    • v.19 no.1
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    • pp.15-23
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    • 2002
  • This study was carried to identify the component of Large Intestine Meridian Muscle in human, dividing into outer, middle, and inner part. Brachium and antebrachium were opened widely to demonstrate muscles, nerve, blood vessels and the others, displaying the inner structure of Large Intestine Meridian Muscle. We obtained the results as follows; 1. Meridian Muscle is composed of the muscle, nerve and blood vessels. 2. In human anatomy, it is present the difference between a term of nerve or blood vessels which control the muscle of Meridian Muscle and those which pass near by Meridian Muscle. 3. The inner composition of meridian muscle in human arm is as follows. 1) Muscle; extensor digitorum tendon(LI-1), lumbrical tendon(LI-2), 1st dosal interosseous muscle(LI-3), 1st dosal interosseous muscle and adductor pollicis muscle(LI-4), extensor pollicis longus tendon and extensor pollicis brevis tendon(LI-5), adductor pollicis longus muscle and extensor carpi radialis brevis tendon(LI-6), extensor digitorum muscle and extensor carpi radialis brevis mucsle and abductor pollicis longus muscle(LI-7), extensor carpi radialis brevis muscle and pronator teres muscle(LI-8), extensor carpi radialis brevis muscle and supinator muscle(LI-9), extensor carpi radialis longus muscle and extensor carpi radialis brevis muscle and supinator muscle(LI-10), brachioradialis muscle(LI-11), triceps brachii muscle and brachioradialis muscle(LI-12), brachioradialis muscle and brachialis muscle(LI-13), deltoid muscle(LI-14, LI-15), trapezius muscle and supraspinous muscle(LI-16), platysma muscle and sternocleidomastoid muscle and scalenous muscle(LI-17, LI-18), orbicularis oris superior muscle(LI-19, LI-20) 2) Nerve; superficial branch of radial nerve and branch of median nerve(LI-1, LI-2, LI-3), superficial branch of radial nerve and branch of median nerve and branch of ulna nerve(LI-4), superficial branch of radial nerve(LI-5), branch of radial nerve(LI-6), posterior antebrachial cutaneous nerve and branch of radial nerve(LI-7), posterior antebrachial cutaneous nerve(LI-8), posterior antebrachial cutaneous nerve and radial nerve(LI-9, LI-12), lateral antebrachial cutaneous nerve and deep branch of radial nerve(LI-10), radial nerve(LI-11), lateral antebrachial cutaneous nerve and branch of radial nerve(LI-13), superior lateral cutaneous nerve and axillary nerve(LI-14), 1st thoracic nerve and suprascapular nerve and axillary nerve(LI-15), dosal rami of C4 and 1st thoracic nerve and suprascapular nerve(LI-16), transverse cervical nerve and supraclavicular nerve and phrenic nerve(LI-17), transverse cervical nerve and 2nd, 3rd cervical nerve and accessory nerve(LI-18), infraorbital nerve(LI-19), facial nerve and infraorbital nerve(LI-20). 3) Blood vessels; proper palmar digital artery(LI-1, LI-2), dorsal metacarpal artery and common palmar digital artery(LI-3), dorsal metacarpal artery and common palmar digital artery and branch of deep palmar aterial arch(LI-4), radial artery(LI-5), branch of posterior interosseous artery(LI-6, LI-7), radial recurrent artery(LI-11), cephalic vein and radial collateral artery(LI-13), cephalic vein and posterior circumflex humeral artery(LI-14), thoracoacromial artery and suprascapular artery and posterior circumflex humeral artery and anterior circumflex humeral artery(LI-15), transverse cervical artery and suprascapular artery(LI-16), transverse cervical artery(LI-17), SCM branch of external carotid artery(LI-18), facial artery(LI-19, LI-20)

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