Meningitis

Details Descriptions About :: Meningitis

 In meningitis, the brain and the spinal cord meninges become inflamed, usually because of bacterial infection. Such inflammation may involve all three meningeal membranes—the dura mater, arachnoid, and pia mater.

Causes for Meningitis

Causes Meningitis is usually a complication of bacteremia, especially due to: pneumonia empyema osteomyelitis endocarditis. Other infections associated with the development of meningitis include: sinusitis otitis media encephalitis myelitis brain abscess, usually caused by Neisseria meningitidis, Haemophilus influenzae, Streptococcus pneumoniae, and Escherichia coli. Meningitis may follow trauma or invasive procedures, including: skull fracture penetrating head wound lumbar puncture ventricular shunting. Aseptic meningitis may result from a virus or other organism. Sometimes no causative organism can be found.

Pathophysiology Meningitis

Pathophysiology Meningitis commonly begins as an inflammation of the pia-arachnoid, which may progress to congestion of adjacent tissues and destroy some nerve cells. The microorganism typically enters the central nervous system by way of blood; direct communication between cerebrospinal fluid (CSF) and the environment (trauma); along cranial or peripheral nerves; or through the mouth or nose. Microorganisms can reach a fetus through the intrauterine environment. The invading organism triggers an inflammatory response in the meninges. In an attempt to ward off the invasion, neutrophils gather in the area and produce an exudate in the subarachnoid space, causing the CSF to thicken. The thickened CSF flows less readily around the brain and spinal cord, and it can block the arachnoid villi, causing hydrocephalus. The exudate also: exacerbates the inflammatory response, increasing the pressure in the brain can extend to the cranial and peripheral nerves, triggering additional inflammation irritates the meninges, disrupting their cell membranes and causing edema. The consequences are elevated intracranial pressure (ICP), engorged blood vessels, disrupted cerebral blood supply, possible thrombosis or rupture and, if ICP isn’t reduced, cerebral infarction. Encephalitis may also ensue as a secondary infection of the brain tissue. In aseptic meningitis, lymphocytes infiltrate the pia-arachnoid layers, but usually not as severely as in bacterial meningitis, and no exudate is formed. Thus, aseptic meningitis is self-limiting.

Signs and symptoms Meningitis

Signs and symptoms Fever, chills, and malaise Headache, vomiting and, rarely, papilledema Signs of meningeal irritation: Nuchal rigidity Positive Brudzinski’s and Kernig’s signs Exaggerated and symmetrical deep tendon reflexes Opisthotonos Irritability, delirium, deep stupor, coma, and photophobia, diplopia, or other vision problems Clinical Tip An infant may show signs of infection, but most are simply fretful and refuse to eat. In an infant, vomiting can lead to dehydration, which prevents formation of a bulging fontanel, an important sign of increased ICP.

Diagnostic Lab Test results

Diagnostic test results Lumbar puncture shows elevated CSF pressure (from obstructed CSF outflow at the arachnoid villi), cloudy or milky-white CSF, high protein level, positive Gram stain and culture (unless a virus is responsible), and decreased glucose concentration. Cultures of blood, urine, and nose and throat secretions reveal the offending organism. Chest X-ray reveals pneumonitis or lung abscess, tubercular lesions, or granulomas secondary to a fungal infection. Sinus and skull X-rays identify cranial osteomyelitis or paranasal sinusitis as the underlying infectious process, or skull fracture as the mechanism for entrance of the microorganism. White blood cell count reveals leukocytosis. Computed tomography scan reveals hydrocephalus, cerebral hematoma, hemorrhage, or tumor. Electrocardiogram reveals sinus arrhythmia.

Treatment for Meningitis

Treatment I.V. antibiotics for at least 2 weeks, followed by oral antibiotics selected by culture and sensitivity testing I.V. fluids Agents to control arrhythmias Mannitol Anticonvulsant (usually given I.V.) or a sedative Aspirin or acetaminophen Clinical Tip Health care workers should take droplet precautions (in addition to standard precautions) for meningitis caused by H. influenzae or N. meningitidis, until 24 hours after the start of effective therapy. NORMAL MENINGES INFLAMMATION IN MENINGITIS

 

Disclaimer ::

The Information available on this site is for only Informational Purpose , before any use of this information please consult your Doctor .Price of the drugs indicated above may not match to real price due to many possible reasons may , including local taxes etc.. These are only approximate indicative prices of the drug.

Leave a comment

Your email address will not be published. Required fields are marked *

royalmpo Royalmpo Royalmpo royalmpo royalmpo royalmpo royalmpo https://malangtoday.id/ https://guyonanbola.com/ renunganhariankatolik.web.id royalmpo royalmpo royalmpo dewaslot168 ri188 https://hayzlett.com/c-suite-network/ kingslot jkt88 mpodewa https://going-natural.com/the-story-behind-the-mutilated-scalp-video/ royalmpo/ pisang88/ langkahcurang/ mpohoki/ mpocuan/ royalmpo/ mporoyal/ asiaslot/ rajaslot138/ royalmpo https://hayzlett.com/news/ rajaslot88/ Analisis Scatter Hitam MahjongWays RTP Terukur Kemenangan Puluhan Grid Fase Awal Mahjong Pola Perilaku Pemain Harian Prediksi Strategi Game Terbaik RTP Strategi Target Kemenangan Tekanan Meja Live Kasino Slot Digital Hiburan Ringan Slot Online Tanpa Target Mengelola Mood Pemain Slot https://going-natural.com/my-braid-locs/ https://going-natural.com/kellen-marcus/ narutoslot bangslot royalmpo royalmpo macanasia bosslot slotking gacorway
Strategi Analitik Platform Game Dalam Mengelola Variasi Pola Permainan Online Di Era Windows 12 Pendekatan Data Driven Dalam Memahami Ritme Sistem Permainan Digital Pada Ekosistem Android Modern Studi Dinamika Platform Gaming Melalui Distribusi Kombinasi Simbol Di Tengah Popularitas Xbox Game Pass Analisis Strategi Modern Dalam Mengelola Volatilitas Sistem Permainan Digital Saat Tren Nintendo Kembali Naik Framework Pengolahan Data Gaming Untuk Menjaga Stabilitas Pola Permainan Dalam Era Gemini AI Tools Teori Permainan Mahjong Ways Dalam Analisa Intensitas Sistem RTP Online Pada Perangkat Smartphone Modern Pendekatan Sistematis Dalam Menganalisis Pola Permainan Pada Ekosistem Gaming Setelah Discord Down Model Evaluasi Strategi Platform Game Melalui Observasi Pergerakan Algoritma Setelah Update iOS 26.3.1 Strategi Adaptif Dalam Mengelola Ritme Permainan Pada Platform Digital Dengan Dukungan Windows 12 Pendekatan Data Analitik Untuk Mengidentifikasi Pola Sistem Permainan Mobile Pada Samsung Galaxy S26 Ultra
Studi Adaptasi Strategi Permainan Mahjong Dalam Sistem Platform Digital Di Tengah Tren Nintendo Gaming Analisis Teknologi Gaming Platform Dalam Evolusi Sistem Permainan Berbasis RTP Di Era Gemini AI Pendekatan Sistematik Dalam Analisis Algoritma Permainan Mobile Saat Dark Mode Twitter Kembali Trending Studi Pola Mahjong Ways Dalam Perspektif Strategi Platform Game Pada Perangkat Smartphone Modern Analisis Perkembangan Algoritma Platform Gaming Dalam Sistem Permainan Pada Era Xbox Game Pass Pendekatan Manajemen Risiko Permainan Mobile Dalam Ekosistem Gaming Android Generasi Baru Strategi Pengamatan Sistem Permainan Dalam Lingkungan Platform Game Modern Saat Windows 12 Dibahas Evaluasi Sistem Gaming Platform Dalam Mengelola Variasi Pola Permainan Pada Perangkat Samsung Galaxy Framework Analitik Permainan Digital Dalam Mengelola Variasi Sistem Game Saat Re9 Update Dibahas Gamer Studi Dinamika Platform Game Melalui Pendekatan Analisis Data Di Era Apple Newsroom Digital Model Framework Strategi Permainan Digital Dalam Platform Gaming Berbasis Android Modern Strategi Pengelolaan Sistem Permainan Melalui Pendekatan Data Analitik Pada Infrastruktur Cloud Gaming Analisis Adaptasi Sistem Permainan Dalam Ekosistem Gaming Digital Saat Project Helix Menjadi Sorotan Pendekatan Modern Dalam Analisis Pola Permainan Berbasis Data Saat Gemini AI Digunakan Developer Evaluasi Dinamika Sistem Permainan Digital Melalui Observasi Data Pada Sistem iOS 26.3.1 Studi Struktur Sistem Game Dalam Perspektif Teknologi Gaming Di Tengah Tren Nintendo Global Pendekatan Framework Gaming Dalam Mengelola Pola Permainan Digital Di Tengah Popularitas Mario Day Analisis Perubahan Pola Mahjong Wins Dalam Ekosistem Gaming Modern Saat Re9 Update Diperbincangkan Model Analitik Pola Permainan Mahjong Dalam Sistem Platform Digital Modern Berbasis Android Studi Evolusi Teknologi Gaming Dalam Pengembangan Platform Permainan Pada Sistem Windows 12 Strategi Modern Membaca Sistem Permainan Digital Berbasis Algoritma Pada Infrastruktur Cloud Gaming Evaluasi Sistem Platform Game Dalam Dinamika Permainan Online Pada Era Smartphone Modern Pendekatan Data Platform Dalam Mengidentifikasi Pola Permainan Online Pada Infrastruktur TV App Strategi Pengolahan Data Gaming Dalam Mengelola Pola Permainan RTP Pada Infrastruktur Gaming Cloud Strategi Pengelolaan Pola Permainan Melalui Analisis Platform Digital Saat iPhone Generasi Baru Dirilis Pendekatan Analitik Sistem Game Dalam Mengelola Ritme Permainan Pada Era Xbox Game Pass Strategi Data Driven Dalam Menganalisis Pola Sistem Permainan Digital Pada Infrastruktur Cloud Studi Algoritma Permainan Mahjong Dalam Perspektif Platform Gaming Pada Ekosistem Android Analisis Sistem Permainan Digital Dalam Kerangka Strategi Platform Game Di Era Apple Ecosystem Dinamika Sistem Permainan Mahjong Digital Melalui Observasi Ritme Algoritma Pada Ekosistem Gaming Mobile Modern Pola Mahjong Ways 2 Hari Ini Strategi Malam Mahjong Wins 3 Kisah Sukses Andi Grid Mahjong & Starlight Saksi Mata: Mode Manual Mahjong Wins RTP Bertahap Pragmatic Spiral Pola Mahjong Ways Kurikulum Jackpot Respon Mahjong Wins 3 Lebih Cepat Akselerasi Free Spin Mahjong Wins3