{"id":20048,"date":"2025-09-09T10:10:43","date_gmt":"2025-09-09T10:10:43","guid":{"rendered":"https:\/\/naijaglobalnews.org\/?p=20048"},"modified":"2025-09-09T10:10:43","modified_gmt":"2025-09-09T10:10:43","slug":"gunman-in-manhattan-shooting-claimed-to-have-cte-how-do-doctors-search-for-it","status":"publish","type":"post","link":"https:\/\/naijaglobalnews.org\/?p=20048","title":{"rendered":"Gunman in Manhattan Shooting Claimed to Have CTE. How Do Doctors Search for It?"},"content":{"rendered":"<p>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">Examining a brain at the Neuropathology Brain Bank at Mount Sinai Medical Center in Manhattan.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">In July, a gunman in Midtown Manhattan left a note that referred to chronic traumatic encephalopathy, or C.T.E., a brain disease that can be diagnosed only after death.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">\u201cStudy my brain please,\u201d the note said.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The New York City medical examiner\u2019s office is examining the shooter\u2019s brain, a process that can take weeks, or months. A visit to the Neuropathology Brain Bank at Mount Sinai in New York City reveals the many steps required to prepare brain tissue for analysis and diagnosis.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 1 \u00b7<\/span> Remove<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">Calvin Keys, morgue director.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Once or twice a week, the autopsy suite in the basement of Mount Sinai receives a body for brain donation. A coordinator works with families to obtain permission and with funeral homes to retrieve the brain quickly, ideally within 24 hours of death.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Parkinson\u2019s disease, Alzheimer\u2019s disease, strokes and normal aging all leave visible changes in brain tissue. Some changes are visible with the naked eye, while others require detailed examination with a microscope or a high-resolution scan.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Posters throughout the brain bank say, \u201cEvery brain tells a story.\u201d But first you need the brain.<\/p>\n<p class=\"g-caption svelte-v3m00m\">An oscillating saw and other instruments used in the procedure.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Stephanie McQuillan, clinical research manager, coordinates brain donations.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The process takes an hour. A technician makes an incision at the back of the head and lifts the scalp to expose the skull. An oscillating saw cuts through the bone, and a scalpel severs the few internal connections that hold the brain in place.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The brain is removed intact, the incision is sealed and the body is returned to the funeral home. \u201cOur job is to make sure the brain is removed in a way that the family can have an open casket,\u201d said Calvin Keys, the hospital\u2019s morgue director.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The fresh brain is weighed \u2014 the first piece of scientific data to be collected \u2014 and then placed in an Igloo cooler lined with a biohazard bag and rolled to the cutting room.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 2 \u00b7<\/span> Breadloaf<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">A brain on a cutting surface behind Victoria Flores Almazan and Taylor Hardy, research associates, and Emma Thorn, the brain bank manager.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The cutting room handles two types of brain tissue: fresh tissue and tissue that has been stabilized and fixed with formalin, a preservative.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">\u201cI have a comparison about the texture,\u201d said Emma Thorn, the brain bank manager. \u201cI\u2019d say a fresh brain is similar to flan, and a fixed brain is similar to a deli ham.\u201d<\/p>\n<p class=\"g-text  svelte-wbgwfj\">A fresh brain is typically separated into its two lobes, or hemispheres. One half is parceled into smaller pieces and frozen for future study, and the other half is submerged in formalin and fixed, a process that can take two or three weeks as the solution penetrates the tissue. Fixing a whole brain takes longer, about a month.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Cutting into the base of a fixed brain.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Breadloafing a fixed brain into thin, consistent slabs.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Fresh brain tissue is too mushy to cut cleanly, but fixed tissue is firm enough to be sliced into thin slabs, a process known as breadloafing. Smooth cuts with a long, single-edged razor help prevent marks and ridges on the slabs. Once a blade starts to snag, it\u2019s replaced.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Cleaning a thin slab of brain tissue.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Each slab of tissue is labeled, inspected and cleaned in preparation for the next step.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 3 \u00b7<\/span> Section<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">A poster highlights 40 numbered regions of brain tissue that are cut out for further analysis.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">After the brain tissue has been sliced into thin slabs, the brain bank removes 40 small sections for further processing.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Cutting a section of brain tissue from a slab.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Placing sections into numbered cassettes.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">A razor blade cuts clean sections of tissue to fit inside numbered plastic cassettes. When all 40 sections have been removed, they are transported across the hall to be processed and embedded in wax.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 4 \u00b7<\/span> Freeze<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">A frozen parcel of fresh brain tissue.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">A different process is used for fresh brain tissue. Regions of interest are parceled into small pouches and then flash-frozen between metal plates lying on dry ice.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The goal is to process and freeze the fresh brain within two hours of removal from the donor\u2019s body, to minimize deterioration.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Parcels of tissue on dry ice.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Freezing damages cells but preserves the tissue\u2019s chemistry. Researchers around the country request frozen tissue for molecular and biochemical testing.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">For long-term storage, the brain bank keeps fresh tissue in freezers at minus 80 degrees Celsius (minus 112 degrees Fahrenheit). Samples of fixed tissue must undergo further steps to make them stable at room temperature.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 5 \u00b7<\/span> Process<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">Removing a tray of cassettes from the tissue processor.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The small cassettes of fixed brain tissue are carried across the hall from the cutting room and placed into a tissue processor for about 24 hours. The processor uses a series of chemicals and substances, including ethyl alcohol and paraffin wax, to remove water and further stabilize the tissue.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 6 \u00b7<\/span> Embed<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">Embedding a section of processed brain tissue in wax.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">After a day of processing, the 40 sections of brain tissue are firm and stable at room temperature. Each section is moved to a metal dish, covered with melted wax and allowed to harden into a solid block.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Leveling the tissue in the liquid wax.<\/p>\n<p class=\"g-caption svelte-v3m00m\">A finished block of brain tissue in hardened wax.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The blocks can now be stored at room temperature, or moved back across the hall to be shaved into thin slices for analysis.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Embedding a section of brain tissue in paraffin wax.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 7 \u00b7<\/span> Slice<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">Shaving thin slides from blocks of brain tissue.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">To make a diagnosis, a doctor needs slides.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Each block of brain tissue is soaked in cold water to firm up the wax, and then inserted into a microtome, a machine that makes precise cuts measured in microns, or millionths of a meter. (A human hair is about 100 microns thick.)<\/p>\n<p class=\"g-text  svelte-wbgwfj\">\u201cRight now the blades are made in Japan \u2014 very, very sharp,\u201d said Valeriy Borukhov, the histotechnician operating the device.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Slicing a block of tissue into shavings that are six microns thick.<\/p>\n<p class=\"g-caption svelte-v3m00m\">A ribbon of wax containing several tissue shavings.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Floating the ribbon on a tray of water.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Capturing a tissue shaving on a slide.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">In an elegant dance, the block bobs against a fixed blade, shaving a continuous ribbon of wax and tissue. The ribbon is floated in a tray of water, separated into individual pieces and then captured on glass slides dipped in the water.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Cutting, floating and separating slides of brain tissue.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The pale, translucent slides are then carried across the hall to be stained.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 8 \u00b7<\/span> Stain<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">Dr. Claudia De Sanctis, histology manager, prepares a machine to stain tissue cut by Mr. Borukhov, at left.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The \u201coctopus,\u201d a hulking gray staining machine with 30 arms for 30 slides, sits in a corner of the histology room.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The device contains vials of solutions, and each inserted slide has a printed code that specifies which chemicals to use. The machine runs for three to 12 hours, depending on the stains required, and produces up to 30 finished slides.<\/p>\n<p class=\"g-caption svelte-v3m00m\">A slide ready for staining.<\/p>\n<p class=\"g-caption svelte-v3m00m\">A tray with different stained slides.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Different stains are used to highlight specific components of the brain tissue. Sometimes multiple runs are required to make a diagnosis, with new slides stained based on the outcome of a previous run.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Loading chemicals and a slide into the staining machine.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The stained slides are cleaned, sealed under glass and sent for analysis. \u201cOnly when we look under the microscope can we make a definitive diagnosis\u201d of C.T.E., said Dr. John Crary, founding director of the brain bank.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Physical microscopes are still used for quick turnarounds or to examine older slides that haven\u2019t yet been scanned, but new slides are run through high-resolution scanners. \u201cThe microscope hasn\u2019t gone away, it\u2019s just not on my desk anymore,\u201d said Dr. Crary.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 9 \u00b7<\/span> Scan<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">Loading slides into a high-resolution scanner.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Stacks of stained slides are loaded into a half-million dollar Leica scanner.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">The resulting scans are magnified up to 400 times, with file sizes measured in gigabytes. A single scan might contain \u201c10 to 100 times more data than an M.R.I.,\u201d according to Dr. Crary.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\"><span class=\"g-number\">Step 10 \u00b7<\/span> Diagnose<\/h2>\n<\/p>\n<p class=\"g-caption svelte-v3m00m\">Dr. Crary compares a pair of scanned slides.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">After several weeks of processing, the brain tissue is ready for analysis.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">To interpret the slides and search for evidence of C.T.E., a pathologist must be aware of the full spectrum of brain disorders.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Dr. Crary examines a stained section of cerebellum.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">\u201cWe\u2019re not studying one disease. We\u2019re studying everything that can possibly go wrong,\u201d said Dr. Crary. \u201cThere\u2019s hemorrhages and strokes, all kinds of vascular changes. There are tumors, infections, developmental disorders, hypoxia, metabolic changes. And all of these things can all be happening simultaneously.\u201d<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\">Tangled Proteins<\/h2>\n<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Dr. Crary often begins by looking at the hippocampus, a seahorse-shaped structure involved with memory formation. He describes it as \u201calmost a fingerprint for different diseases,\u201d which if present, affect different parts of its complex structure.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Like rows of tiny staples, tau proteins help support and stabilize the structure of neurons in the brain. But abnormal tau can clump together in a tangled net of protein, killing the neuron and leading to cognitive decline.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Below, sections of hippocampi from two brains are stained to highlight tangles of tau. Most brains develop abnormal tau in specific areas of the hippocampus as they age. But a brain with severe C.T.E. might eventually develop dense bands of abnormal tau across the whole structure.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Tangles of tau, stained brown, in the hippocampus of an aging brain.<\/p>\n<p class=\"g-caption svelte-v3m00m\">The same area in a brain with severe C.T.E.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\">Pressure Points<\/h2>\n<\/p>\n<p class=\"g-text  svelte-wbgwfj\">C.T.E. is a mechanical injury, where mild but repetitive impacts stretch and tear the delicate fibers that connect brain cells. This physical damage tends to be amplified at natural weak points in the brain\u2019s geometry.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">One weak point is along the depths of the sulci, the furrows and grooves in the brain\u2019s rippled surface.<\/p>\n<p class=\"g-caption svelte-v3m00m\">A stained section of brain from a 68-year-old man who had C.T.E.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Abnormal tau, stained brown, is visible around the base of the sulci, or grooves in his brain.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">\u201cI think of it as like a Kit Kat bar,\u201d said Dr. Crary. If you apply pressure to a grooved chocolate bar, \u201cit breaks at that little sulcus because that\u2019s the weakest point.\u201d He added, \u201cSo this is exactly what\u2019s happening in the brain. This is a pressure point.\u201d<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\">A Diagnostic Bull\u2019s-Eye<\/h2>\n<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Impacts can also damage soft brain tissue surrounding more rigid blood vessels.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Dr. Crary compared this effect to another food. \u201cImagine the brain is a bowl of Jell-O.\u201d The soft gelatin doesn\u2019t tear when you shake the bowl, he explained, but if a straw is embedded inside, the shaking gelatin can shear and tear where it touches the rigid sides of the straw.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Abnormal tau, stained brown, around the cross section of a blood vessel.<\/p>\n<p class=\"g-caption svelte-v3m00m\">Abnormal tau in neurons around two blood vessels.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">In a similar way, abnormal tau can accumulate in damaged tissue around blood vessels in the brain, leaving a \u201cbull\u2019s-eye\u201d pattern on a slide that is the definitive evidence needed to diagnose C.T.E.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">But interpreting tau is a delicate art. Pathologists must \u201cread the tea leaves\u201d and judge whether the bull\u2019s-eye\u2019s tangles are in neurons, which count toward a C.T.E. diagnosis, and not in other types of brain cells, which do not.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">In general, according to Dr. Crary, abnormal tau in \u201cC.T.E. is going to be patchy and Alzheimer\u2019s disease is going to be diffuse, and normal aging is going to be localized to very specific structures.\u201d<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Dr. Jamie Walker, co-director of the brain bank, is focused on finding a biomarker that could differentiate these types of abnormal tangles in living patients.<\/p>\n<p><h2 class=\"g-subhed  svelte-wg034b\">Future Steps<\/h2>\n<\/p>\n<p class=\"g-text  svelte-wbgwfj\">Researchers at the brain bank are working to train artificial intelligence to make objective judgments about scanned slides and reduce human bias in making diagnoses. And they hope that A.I. models will identify patterns across thousands of slides that are too subtle for their human trainers to detect.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">\u201cBasically you have a giant pile of hay and one needle in it, and you tell the algorithm to find that needle,\u201d said Dr. Kurt Farrell, an assistant professor of pathology who develops machine learning models at the brain bank.<\/p>\n<p class=\"g-caption svelte-v3m00m\">A collection of atypical brain slabs. Dr. Crary points at a brain with a dark stain from a severe hemorrhage.<\/p>\n<p class=\"g-caption svelte-v3m00m\">A brain that had Alzheimer\u2019s disease shows enlarged cavities, or ventricles.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">In a 2023 paper, an A.I. model developed at Mount Sinai was trained to predict a brain\u2019s age based on images of the hippocampus. The estimates were typically within five years \u2014 more accurate than pathologists. Unpublished results also suggest signs of accelerated aging in C.T.E. brains, which an A.I. model estimated were roughly 10 years older than their chronological ages.<\/p>\n<p class=\"g-text  svelte-wbgwfj\">And while C.T.E. can be definitively diagnosed only posthumously, future tests may be able to diagnose the disease while a person is alive.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Examining a brain at the Neuropathology Brain Bank at Mount Sinai Medical Center in Manhattan. In July, a gunman in Midtown Manhattan left a note that referred to chronic traumatic encephalopathy, or C.T.E., a brain disease that can be diagnosed only after death. \u201cStudy my brain please,\u201d the note said. The New York City medical<\/p>\n","protected":false},"author":1,"featured_media":20049,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[55],"tags":[2649,6600,366,6599,5244,2018,4527],"class_list":{"0":"post-20048","1":"post","2":"type-post","3":"status-publish","4":"format-standard","5":"has-post-thumbnail","7":"category-social-issues","8":"tag-claimed","9":"tag-cte","10":"tag-doctors","11":"tag-gunman","12":"tag-manhattan","13":"tag-search","14":"tag-shooting"},"_links":{"self":[{"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=\/wp\/v2\/posts\/20048","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=%2Fwp%2Fv2%2Fcomments&post=20048"}],"version-history":[{"count":0,"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=\/wp\/v2\/posts\/20048\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=\/wp\/v2\/media\/20049"}],"wp:attachment":[{"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=%2Fwp%2Fv2%2Fmedia&parent=20048"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=%2Fwp%2Fv2%2Fcategories&post=20048"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/naijaglobalnews.org\/index.php?rest_route=%2Fwp%2Fv2%2Ftags&post=20048"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}