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J Mocco

Bio: J Mocco is an academic researcher from Mount Sinai Health System. The author has contributed to research in topics: Stroke & Aneurysm. The author has an hindex of 12, co-authored 35 publications receiving 1722 citations.

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Journal ArticleDOI
TL;DR: Five patients younger than 50 years of age with large-vessel stroke and Covid-19 infection presented to a health system in New York City over a 2-week period with signs of stroke and infection.
Abstract: Stroke in Young Patients with Covid-19 Five patients younger than 50 years of age with large-vessel stroke and Covid-19 infection presented to a health system in New York City over a 2-week period....

1,733 citations

Journal ArticleDOI
TL;DR: Medical management for SAH aims to minimize early brain injury, cerebral edema, hydrocephalus, increased intracranial pressure (ICP), and medical complications, and management then focuses on preventing, detecting, and treating DCI.
Abstract: Aneurysmal subarachnoid hemorrhage (SAH) affects six to nine people per 100,000 per year, has a 35% mortality, and leaves many with lasting disabilities, often related to cognitive dysfunction. Clinical decision rules and more sensitive computed tomography (CT) have made the diagnosis of SAH easier, but physicians must maintain a high index of suspicion. The management of these patients is based on a limited number of randomized clinical trials (RCTs). Early repair of the ruptured aneurysm by endovascular coiling or neurosurgical clipping is essential, and coiling is superior to clipping in cases amenable to both treatments. Aneurysm repair prevents rebleeding, leaving the most important prognostic factors for outcome early brain injury from the hemorrhage, which is reflected in the neurologic condition of the patient, and delayed cerebral ischemia (DCI). Observational studies suggest outcomes are better when patients are managed in specialized neurologic intensive care units with inter- or multidisciplinary clinical groups. Medical management aims to minimize early brain injury, cerebral edema, hydrocephalus, increased intracranial pressure (ICP), and medical complications. Management then focuses on preventing, detecting, and treating DCI. Nimodipine is the only pharmacologic treatment that is approved for SAH in most countries, as no other intervention has demonstrated efficacy. In fact, much of SAH management is derived from studies in other patient populations. Therefore, further study of complications, including DCI and other medical complications, is needed to optimize outcomes for this fragile patient population.

126 citations

Journal ArticleDOI
TL;DR: While the data on COVID-19 are rapidly emerging, the Society of NeuroInterventional Surgery seeks to provide neurointerventionalists with rapid up-to-date recommendations on the management of stroke thrombectomy in this setting with an emphasis on safety measures for healthcare workers.
Abstract: The global pandemic of coronavirus disease 2019 (COVID-19), caused by the novel severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), represents an unprecedented challenge to our healthcare system.1 As the number of identified COVID-19 patients exponentially increases, protocols for the safe delivery of care of both patients and providers are vital. This is especially true, given the number of healthcare providers who have contracted the disease. If we fail to protect physicians, nursing staff, and ancillary providers, we will fail to meet the needs of future patients. The successful care of future COVID-19 patients will depend on effective safety and prevention strategies for healthcare workers.2 Patients with acute ischemic stroke (AIS) are a high-risk patient cohort. Li et al performed an analysis of six studies encompassing 1527 patients with COVID-19 and showed that patients with cardio/cerebrovascular disease comprised 16.4% of the cohort, but that the incidence was approximately threefold higher among patients with severe COVID-19 requiring intensive care (ICU) admission.3 Thus, patients with a history of AIS and/or its risk factors are particularly at risk for the severe form of COVID-19. Additionally, there is early evidence that SARS-CoV-2 can cause neurologic signs, and that it has been reported in the brains of both patients and animal models.4 Of patients with SARS-CoV-2 respiratory distress, 36.4% had neurologic symptoms with 4.5% of severe patients suffering ischemic stroke.5 In this setting, neurointerventionalists should expect to be involved in the care of COVID-19-positive patients, as well as those whose status is unknown and those at risk of a severe form of the disease. While the data on COVID-19 are rapidly emerging, the Society of NeuroInterventional Surgery seeks to provide neurointerventionalists with rapid up-to-date recommendations on the management of stroke thrombectomy in this setting with an emphasis on safety measures for …

87 citations

Journal ArticleDOI
TL;DR: The first-in-human experience of a minimally invasive, fully implanted, wireless, ambulatory motor neuroprosthesis using an endovascular stent-electrode array to transmit electrocorticography signals from the motor cortex for multiple command control of digital devices in two participants with flaccid upper limb paralysis is described.
Abstract: Background Implantable brain–computer interfaces (BCIs), functioning as motor neuroprostheses, have the potential to restore voluntary motor impulses to control digital devices and improve functional independence in patients with severe paralysis due to brain, spinal cord, peripheral nerve or muscle dysfunction. However, reports to date have had limited clinical translation. Methods Two participants with amyotrophic lateral sclerosis (ALS) underwent implant in a single-arm, open-label, prospective, early feasibility study. Using a minimally invasive neurointervention procedure, a novel endovascular Stentrode BCI was implanted in the superior sagittal sinus adjacent to primary motor cortex. The participants undertook machine-learning-assisted training to use wirelessly transmitted electrocorticography signal associated with attempted movements to control multiple mouse-click actions, including zoom and left-click. Used in combination with an eye-tracker for cursor navigation, participants achieved Windows 10 operating system control to conduct instrumental activities of daily living (IADL) tasks. Results Unsupervised home use commenced from day 86 onwards for participant 1, and day 71 for participant 2. Participant 1 achieved a typing task average click selection accuracy of 92.63% (100.00%, 87.50%–100.00%) (trial mean (median, Q1–Q3)) at a rate of 13.81 (13.44, 10.96–16.09) correct characters per minute (CCPM) with predictive text disabled. Participant 2 achieved an average click selection accuracy of 93.18% (100.00%, 88.19%–100.00%) at 20.10 (17.73, 12.27–26.50) CCPM. Completion of IADL tasks including text messaging, online shopping and managing finances independently was demonstrated in both participants. Conclusion We describe the first-in-human experience of a minimally invasive, fully implanted, wireless, ambulatory motor neuroprosthesis using an endovascular stent-electrode array to transmit electrocorticography signals from the motor cortex for multiple command control of digital devices in two participants with flaccid upper limb paralysis.

83 citations

Journal ArticleDOI
TL;DR: A repeat systematic review and meta-analysis of the literature from 1999 to April 2019 is warranted to help guide therapeutic decisions and address gaps in knowledge about the role of mechanical thrombectomy in pediatric acute ischemic stroke.
Abstract: OBJECTIVE The role of mechanical thrombectomy in pediatric acute ischemic stroke is uncertain, despite extensive evidence of benefit in adults. The existing literature consists of several recent small single-arm cohort studies, as well as multiple prior small case series and case reports. Published reports of pediatric cases have increased markedly since 2015, after the publication of the positive trials in adults. The recent AHA/ASA Scientific Statement on this issue was informed predominantly by pre-2015 case reports and identified several knowledge gaps, including how young a child may undergo thrombectomy. A repeat systematic review and meta-analysis is warranted to help guide therapeutic decisions and address gaps in knowledge. METHODS Using PRISMA-IPD guidelines, the authors performed a systematic review of the literature from 1999 to April 2019 and individual patient data meta-analysis, with 2 independent reviewers. An additional series of 3 cases in adolescent males from one of the authors' centers was also included. The primary outcomes were the rate of good long-term (mRS score 0-2 at final follow-up) and short-term (reduction in NIHSS score by ≥ 8 points or NIHSS score 0-1 at up to 24 hours post-thrombectomy) neurological outcomes following mechanical thrombectomy for acute ischemic stroke in patients < 18 years of age. The secondary outcome was the rate of successful angiographic recanalization (mTICI score 2b/3). RESULTS The authors' review yielded 113 cases of mechanical thrombectomy in 110 pediatric patients. Although complete follow-up data are not available for all patients, 87 of 96 (90.6%) had good long-term neurological outcomes (mRS score 0-2), 55 of 79 (69.6%) had good short-term neurological outcomes, and 86 of 98 (87.8%) had successful angiographic recanalization (mTICI score 2b/3). Death occurred in 2 patients and symptomatic intracranial hemorrhage in 1 patient. Sixteen published thrombectomy cases were identified in children < 5 years of age. CONCLUSIONS Mechanical thrombectomy may be considered for acute ischemic stroke due to large vessel occlusion (ICA terminus, M1, basilar artery) in patients aged 1-18 years (Level C evidence; Class IIb recommendation). The existing evidence base is likely affected by selection and publication bias. A prospective multinational registry is recommended as the next investigative step.

55 citations


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01 Jan 2020
TL;DR: Prolonged viral shedding provides the rationale for a strategy of isolation of infected patients and optimal antiviral interventions in the future.
Abstract: Summary Background Since December, 2019, Wuhan, China, has experienced an outbreak of coronavirus disease 2019 (COVID-19), caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Epidemiological and clinical characteristics of patients with COVID-19 have been reported but risk factors for mortality and a detailed clinical course of illness, including viral shedding, have not been well described. Methods In this retrospective, multicentre cohort study, we included all adult inpatients (≥18 years old) with laboratory-confirmed COVID-19 from Jinyintan Hospital and Wuhan Pulmonary Hospital (Wuhan, China) who had been discharged or had died by Jan 31, 2020. Demographic, clinical, treatment, and laboratory data, including serial samples for viral RNA detection, were extracted from electronic medical records and compared between survivors and non-survivors. We used univariable and multivariable logistic regression methods to explore the risk factors associated with in-hospital death. Findings 191 patients (135 from Jinyintan Hospital and 56 from Wuhan Pulmonary Hospital) were included in this study, of whom 137 were discharged and 54 died in hospital. 91 (48%) patients had a comorbidity, with hypertension being the most common (58 [30%] patients), followed by diabetes (36 [19%] patients) and coronary heart disease (15 [8%] patients). Multivariable regression showed increasing odds of in-hospital death associated with older age (odds ratio 1·10, 95% CI 1·03–1·17, per year increase; p=0·0043), higher Sequential Organ Failure Assessment (SOFA) score (5·65, 2·61–12·23; p Interpretation The potential risk factors of older age, high SOFA score, and d-dimer greater than 1 μg/mL could help clinicians to identify patients with poor prognosis at an early stage. Prolonged viral shedding provides the rationale for a strategy of isolation of infected patients and optimal antiviral interventions in the future. Funding Chinese Academy of Medical Sciences Innovation Fund for Medical Sciences; National Science Grant for Distinguished Young Scholars; National Key Research and Development Program of China; The Beijing Science and Technology Project; and Major Projects of National Science and Technology on New Drug Creation and Development.

4,408 citations

Journal ArticleDOI
TL;DR: The extrapulmonary organ-specific pathophysiology, presentations and management considerations for patients with COVID-19 are reviewed to aid clinicians and scientists in recognizing and monitoring the spectrum of manifestations, and in developing research priorities and therapeutic strategies for all organ systems involved.
Abstract: Although COVID-19 is most well known for causing substantial respiratory pathology, it can also result in several extrapulmonary manifestations. These conditions include thrombotic complications, myocardial dysfunction and arrhythmia, acute coronary syndromes, acute kidney injury, gastrointestinal symptoms, hepatocellular injury, hyperglycemia and ketosis, neurologic illnesses, ocular symptoms, and dermatologic complications. Given that ACE2, the entry receptor for the causative coronavirus SARS-CoV-2, is expressed in multiple extrapulmonary tissues, direct viral tissue damage is a plausible mechanism of injury. In addition, endothelial damage and thromboinflammation, dysregulation of immune responses, and maladaptation of ACE2-related pathways might all contribute to these extrapulmonary manifestations of COVID-19. Here we review the extrapulmonary organ-specific pathophysiology, presentations and management considerations for patients with COVID-19 to aid clinicians and scientists in recognizing and monitoring the spectrum of manifestations, and in developing research priorities and therapeutic strategies for all organ systems involved.

2,113 citations

Journal ArticleDOI
Aravinthan Varatharaj1, Aravinthan Varatharaj2, Naomi Thomas3, Mark Ellul4, Mark Ellul5, Mark Ellul6, Nicholas W. S. Davies, Thomas A Pollak7, Elizabeth L Tenorio8, Mustafa Sultan3, Ava Easton6, Gerome Breen7, Michael S. Zandi9, Jonathan P. Coles10, Hadi Manji9, Rustam Al-Shahi Salman11, David K. Menon10, Timothy R Nicholson7, Laura A Benjamin6, Laura A Benjamin9, Alan Carson11, Craig J. Smith12, Martin R Turner13, Tom Solomon6, Tom Solomon5, Tom Solomon4, Rachel Kneen5, Rachel Kneen6, Sarah Pett14, Ian Galea1, Ian Galea2, Rhys H. Thomas15, Rhys H. Thomas3, Benedict D Michael6, Benedict D Michael5, Benedict D Michael4, Claire Allen, Neil Archibald, James Arkell, Peter Arthur-Farraj, Mark R. Baker, Harriet A. Ball, Verity Bradley-Barker, Zoe Brown, Stefania Bruno, Lois Carey, Christopher Carswell, Annie Chakrabarti, James Choulerton, Mazen Daher, Ruth Davies, Rafael Di Marco Barros, Sofia Dima, Rachel Dunley, Dipankar Dutta, Richard James Booth Ellis, Alex Everitt, Joseph Fady, Patricia Fearon, Leonora Fisniku, Ivie Gbinigie, Alan Gemski, Emma Gillies, Effrossyni Gkrania-Klotsas, Julie Grigg, Hisham Hamdalla, Jack Hubbett, Neil Hunter, Anne-Catherine Huys, Ihmoda Ihmoda, Sissi Ispoglou, Ashwani Jha, Ramzi Joussi, Dheeraj Kalladka, Hind Khalifeh, Sander Kooij, Guru Kumar, Sandar Kyaw, Lucia Li, Edward Littleton, Malcolm R. Macleod, Mary Joan MacLeod, Barbara Madigan, Vikram Mahadasa, Manonmani Manoharan, Richard Marigold, Isaac Marks, Paul M. Matthews, Michael Mccormick, Caroline Mcinnes, Antonio Metastasio, Philip Milburn-McNulty, Clinton Mitchell, Duncan Mitchell, Clare Morgans, Huw R. Morris, Jasper M. Morrow, Ahmed Mubarak Mohamed, Paula Mulvenna, Louis Murphy, Robert Namushi, Edward J Newman, Wendy Phillips, Ashwin Pinto, David A Price, Harald Proschel, Terry Quinn, Deborah Ramsey, Christine Roffe, Amy L Ross Russell, Neshika Samarasekera, Stephen Sawcer, Walee Sayed, Lakshmanan Sekaran, Jordi Serra-Mestres, Victoria K. Snowdon, Gayle Strike, James Sun, Christina Tang, Mark Vrana, Ryckie G. Wade, Chris Wharton, Lou Wiblin, Iryna Boubriak, Katie Herman, Gordon T. Plant 
TL;DR: This is the first nationwide, cross-specialty surveillance study of acute neurological and psychiatric complications of COVID-19 and provides valuable and timely data that are urgently needed by clinicians, researchers, and funders.

990 citations

Journal ArticleDOI
TL;DR: The interaction between the viral spike protein and angiotensin-converting enzyme 2, which triggers entry of the virus into host cells, is likely to be involved in the cardiovascular manifestations of COVID-19.
Abstract: Coronavirus disease 2019 (COVID-19), caused by a strain of coronavirus known as severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), has become a global pandemic that has affected the lives of billions of individuals. Extensive studies have revealed that SARS-CoV-2 shares many biological features with SARS-CoV, the zoonotic virus that caused the 2002 outbreak of severe acute respiratory syndrome, including the system of cell entry, which is triggered by binding of the viral spike protein to angiotensin-converting enzyme 2. Clinical studies have also reported an association between COVID-19 and cardiovascular disease. Pre-existing cardiovascular disease seems to be linked with worse outcomes and increased risk of death in patients with COVID-19, whereas COVID-19 itself can also induce myocardial injury, arrhythmia, acute coronary syndrome and venous thromboembolism. Potential drug-disease interactions affecting patients with COVID-19 and comorbid cardiovascular diseases are also becoming a serious concern. In this Review, we summarize the current understanding of COVID-19 from basic mechanisms to clinical perspectives, focusing on the interaction between COVID-19 and the cardiovascular system. By combining our knowledge of the biological features of the virus with clinical findings, we can improve our understanding of the potential mechanisms underlying COVID-19, paving the way towards the development of preventative and therapeutic solutions.

927 citations