Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0042571 (vertigo)
7,148 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Twenty-four patients, including two with aplastic anemia and 22 with malignancy, underwent marrow transplantation after preparation with mechlorethamine, 0.3 to 2.0 mg/kg body weight. Fourteen of the 21 neurologically evaluable recipients developed immediate neurotoxicity a median of 4 days after treatment (range, 0 to 34 days). Confusion and disorientation were observed in six patients, headache in six, hallucinations n four, lethargy in four, tremors in three, paraplegia in one, seizure in one, and vertigo in one. Whereas acute symptoms cleared in 11 patients, three remained symptomatic until death. Twelve evaluable patients survived more than 60 days; all six with previous acute toxicity subsequently developed delayed onset of new neurologic findings (personality change, confusion, seizure, diplopia, or dementia) a median of 169 days (range, 70 to 248 days) after treatment. Cerebrospinal fluid analysis was usually normal but cerebral computed tomographic scans showed ventricular enlargement and electroencephalograms showed diffuse slowing. Postmortem histologic examination of brain showed neuronal degenerative changes with increased vascularity, gliosis, and perivascular fibrosis. Neurotoxicity appeared to increase with age and mechlorethamine dose and was commoner in patients given additional procarbazine or cyclophosphamide.
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PMID:Immediate and delayed neurotoxicity after mechlorethamine preparation for bone marrow transplantation. 704 28

57 cases of multiple sclerosis was seen from 1949-1979, an incidence of 935 per 100,000 neurological admissions, and 0.04 per 100,000 inpatient admissions. There was a sex ratio of 1:1.1, and a mean age of 33 years. The mean duration of illness was 31 months. It is striking that in 47% the initial affliction was visual impairment (62% being bilateral). Motor paralysis, chiefly paraplegia (37%) was also frequent. However, initial diplopia, vertigo and ataxia were uncommon. Aside from these variations the clinical picture of multiple sclerosis is essentially the same as seen in the West. The EEG changes were nonspecific without definite correlations with age, sex, occupation, birthplace, age at admission, age at onset, duration of illness, mode of onset and clinical manifestations. Active cases presented more abnormal records thant quiescent cases. More abnormal records were obtained in cases with remissions and relapses than those running a progressive course. The EEG, especially with serial studies, is helpful in depicting cortical dysfunction in multiple sclerosis at an early stage of the disease. A normal tracing does not exclude structural damage inasmuch as submicroscopic and substructural physiochemical changes might not be sufficiently severe to cause alteration in electrical activity recorded from the convexity of the cerebral hemispheres.
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PMID:Clinico-electroencephalographic studies of multiple sclerosis. 734 1

Multiple myeloma (MM) is a plasma cell malignancy characterized by infiltration of bone marrow, bone destruction, infiltration of soft tissues with plasma cells, and suppression of normal hematopoiesis. The production of monoclonal immunoglobulins with or without light chains is a major feature of the disease. Full spectrum of plasma cell dyscrasias include monoclonal gammapathy of undetermined significance, smouldering myeloma, indolent multiple myeloma, and fully developed, symptomatic multiple myeloma. The usual presenting features of MM include bone pain, weakness, fatigue, fever and infection. Neurologic symptoms are less common but one must not forget that MM may present with a neurologic disease. Careful neurologic history and examination are mandatory in patients with MM. Neurologic symptoms may be a direct manifestation of MM or may be due to the immune effect of monoclonal proteins directed against different neural structures. Finally, metabolic consequences (uremia, hypercalcemia, hyperviscosity) of MM may produce a broad spectrum of different neurologic symptoms including headache, blurring of vision, drowsiness, precoma, coma, vertigo, ataxia, hemiparesis and epileptiform seizures. The most common location of bone changes in MM is the thoracic spine, where it causes osteolytic changes with consequent compressive fractures. The most disastrous sequel is paraplegia. Multiple vertebral involvement with the evidence of osteolytic changes in other bones is usual, but solitary vertebral myeloma may occur. Myeloma usually involves the bone of the vertebral body and then spreads into the extradural space. However, patients with solitary extradural myeloma have been reported. Skull myeloma is frequently asymptomatic. It may grow externally or, rarely, there is intracranial expansion. Involvement of the cranial nerves is not rare, with II, V, VI, VII and VIII cranial nerves being most often affected. Isolated intracerebral plasmacytomas are extremely rare. Diagnostic approach includes plain X-rays of the skeleton, which was found to be the method of choice for demonstration of osteolytic changes, whereas magnetic resonance with gadolinium enhancement most reliably displays the degree of vertebral involvement and demonstrates any associated soft tissue mass. Current treatment of osteolytic changes in multiple myeloma include chemotherapy, radiotherapy in combination with dexamethasone, monthly infusions of bisphosphonates, surgical decompression, and kyphoplasty. Therapeutic approach is dictated by the presenting symptoms. In case of pain as the predominant symptom, treatment with chemotherapy and radiotherapy may be appropriate. Compressive symptoms are relieved with dexamethasone followed by radiotherapy and chemotherapy. Surgical decompression is used in patients with vertebral collapse and vertebral instability. Kyphoplasty is a new method used in the treatment of osteolytic changes of vertebral bodies. A viscous cement is injected into the cavity by a balloon-like inflatable bone tampon. It has been successfully employed to improve the quality of life, to reduce pain, and to increase overall functioning in patients with vertebral compression fractures by restoring most of the original height of the vertebral body. Bisphosphonates reduce pain associated with osteolytic changes in multiple myeloma, but also significantly reduce skeletal events (pathologic fracture, spinal cord compression, surgery or irradiation of bone) via unknown mechanism. It seems that bisphosphonates, by inhibiting bone resorption, alter the microenvironment in which the MM cells grow.
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PMID:[Neurologic sequelae of bone changes in multiple myeloma and its therapy]. 1263 Mar 41

Introduce Professor Zhang Dao-zong's studies on the Governor Vessel and its academic thought of dredging the Governor Vessel and regulating mentality, and clinical experiences of dredging the Governor Vessel and regulating mentality therapy for apoplexy, epilepsy, vertigo, ankynosing spondylitis, traumatic paraplegia, child Tourette's disease, etc....
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PMID:[Simple analysis on professor ZHANG Dao-Zong's academic thought of dredging the Governor Vessel and regulating mentality]. 1711 77

Diving exposes a person to the combined effects of increased ambient pressure and immersion. The reduction in pressure when surfacing can precipitate decompression sickness (DCS), caused by bubble formation within tissues due to inert gas supersaturation. Arterial gas embolism (AGE) can also occur due to pulmonary barotrauma as a result of breath holding during ascent or gas trapping due to disease, causing lung hyperexpansion, rupture and direct entry of alveolar gas into the blood. Bubble disease due to either DCS or AGE is collectively known as decompression illness. Tissue and intravascular bubbles can induce a cascade of events resulting in CNS injury. Manifestations of decompression illness can vary in severity, from mild (paresthesias, joint pains, fatigue) to severe (vertigo, hearing loss, paraplegia, quadriplegia). Particularly as these conditions are uncommon, early recognition is essential to provide appropriate management, consisting of first aid oxygen, targeted fluid resuscitation and hyperbaric oxygen, which is the definitive treatment. Less common neurologic conditions that do not require hyperbaric oxygen include rupture of a labyrinthine window due to inadequate equalization of middle ear pressure during descent, which can precipitate vertigo and hearing loss. Sinus and middle ear overpressurization during ascent can compress the trigeminal and facial nerves respectively, causing temporary facial hypesthesia and lower motor neuron facial weakness. Some conditions preclude safe diving, such as seizure disorders, since a convulsion underwater is likely to be fatal. Preventive measures to reduce neurologic complications of diving include exclusion of individuals with specific medical conditions and safe diving procedures, particularly related to descent and ascent.
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PMID:Neurology and diving. 2436 63